Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
---|---|---|---|---|---|
51696 | 2023-03-01 | Chemical Shifts: 2 sets |
Backbone chemical shift assignment of yeast expressed NIST-Fab light and heavy chain |
Backbone NMR assignment of the yeast expressed Fab fragment of the NISTmAb reference antibody
|
Genevieve Gingras, John P Marino, Kinlin Chao, Robert G Brinson, Tsega L Solomon, W Brad O'Dell, Yves Aubin |
51599 | 2022-09-30 | Chemical Shifts: 1 set |
hCEACAM1-Ig1-LBP4 Ala and Val methyl chemical shifts |
AssignSLP_GUI, a software tool exploiting AI for NMR resonance assignment of sparsely labeled proteins
|
Alexander Eletsky, Chin Huang, James H Prestegard, Kelley W Moremen, Laura C Morris, Monique J Rogals, Robert V Williams |
51445 | 2022-06-14 | Chemical Shifts: 1 set |
Chemical shift assignments for alanine and valine methyls of Robo1-Ig1-2-LnLoop |
NMR analysis suggests the terminal domains of Robo1 remain extended but are rigidified in the presence of heparan sulfate
|
Chin Huang, I J Amster, James H Prestegard, Kelley W Moremen, Robert V Williams |
51327 | 2022-04-22 | Chemical Shifts: 2 sets |
Backbone 1H, 13C and 15N chemical shift assignments for the N-terminal SH3 domain of Drk |
Structural basis of protein substrate processing by human mitochondrial high-temperature requirement A2 protease
|
Lewis E Kay, Robert W Harkness, Yuki Toyama |
51158 | 2022-03-29 | Chemical Shifts: 1 set |
Modified siRNA |
Structural Fingerprinting of Short Interfering RNA Therapeutics by Solution Nuclear Magnetic Resonance Spectroscopy
|
Anh Tran, Jace W Jones, John P Marino, Owen B Becette, Robert G Brinson |
51155 | 2022-03-29 | Chemical Shifts: 1 set |
Unmodified siRNA |
Structural Fingerprinting of Short Interfering RNA Therapeutics by Solution Nuclear Magnetic Resonance Spectroscopy
|
Anh Tran, Jace W Jones, John P Marino, Owen B Becette, Robert G Brinson |
30610 | 2019-05-17 | Chemical Shifts: 1 set |
hMcl1 inhibitor complex |
AMG 176, a Selective MCL1 Inhibitor, Is Effective in Hematologic Cancer Models Alone and in Combination with Established Therapies.
|
A C Cheng, A Coxon, A Wei, A W Roberts, B Belmontes, B Lucas, C H Benes, D A Whittington, D C Huang, D Chui, D Moujalled, E Cajulis, G Moody, G Pomilio, J Canon, J D McClanaghan, J Gong, J Houze, J P Taygerly, J Sun, K S Keegan, L Damon, L Poppe, L Zhu, M Cardozo, M Vimolratana, M Zancanella, N A Paras, P Beltran, P E Hughes, P Greninger, R K Egan, S Caenepeel, S P Brown, T Osgood, X Huang, X Wang, Y Li |
27777 | 2019-03-06 | Chemical Shifts: 1 set |
1H-15N HSQC assignment for Insulin-like growth factor 2 mRNA-binding protein 1 domain KH1-2 |
IMP1 KH1 and KH2 domains create a structural platform with unique RNA recognition and re-modelling properties.
|
Andres Ramos, Andrew G Purkiss, Fruzsina Hobor, Geoff Kelly, Ian A Taylor, Neil J Ball, Robert Dagil, Roksana W Ogrodowicz, Stephen R Martin |
27564 | 2018-09-04 | Chemical Shifts: 1 set |
1H, 13C, 15N NMR Backbone assignments of B. cereus 5/B/6 metallo-beta-lactamase |
A DNA aptamer reveals an allosteric site for inhibition in metallo-beta-lactamases
|
Anthony A Bui, Benjamin J Wylie, Michael P Latham, Nazmul H Khan, Robert W Shaw, Roger B Sutton, Yang Xiao |
27410 | 2018-06-20 | Chemical Shifts: 1 set |
Ile and Met methyl 1H and 13C chemical shifts of DNA polymerase beta, 1-nucleotide gapped double hairpin DNA and dAMPCPP ternary complex |
Transitions in DNA polymerase beta microsecond-millisecond dynamics related to substrate binding and catalysis
|
Eugene F DeRose, Geoffrey A Mueller, Robert E London, Samuel H Wilson, Thomas W Kirby, William A Beard |
27409 | 2018-06-20 | Chemical Shifts: 1 set |
Ile and Met methyl 1H and 13C chemical shifts of DNA polymerase beta and 1-nucleotide gapped double hairpin DNA binary complex |
Transitions in DNA polymerase beta microsecond-millisecond dynamics related to substrate binding and catalysis
|
Eugene F DeRose, Geoffrey A Mueller, Robert E London, Samuel H Wilson, Thomas W Kirby, William A Beard |
27407 | 2018-06-20 | Chemical Shifts: 1 set |
Ile and Met methyl 1H and 13C chemical shifts of DNA polymerase beta |
Transitions in DNA polymerase beta microsecond-millisecond dynamics related to substrate binding and catalysis
|
Eugene F DeRose, Geoffrey A Mueller, Robert E London, Samuel H Wilson, Thomas W Kirby, William A Beard |
27321 | 2019-06-21 | Chemical Shifts: 2 sets Heteronuclear NOE Values: 1 set T1 Relaxation Values: 1 set T2 Relaxation Values: 1 set |
1H, 13C and 15N Chemical Shift Assignments and 15N backbone relaxation data for intracellular loop 2 of the human ZIP4 protein |
Concomitant disorder and high-affinity zinc binding in the human zinc- and iron-regulated transport protein 4 intracellular loop
|
Elizabeth M Bafaro, Jeffrey C Hoch, Mark W Maciejewski, Robert E Dempski |
26908 | 2017-02-15 | Chemical Shifts: 1 set |
Backbone 1H, 13C, 15N chemical shift assignments of portions of Thermotoga maritima flagellar motor proteins FliG (N-terminal domain; FliGN) and FliF (C-terminal domain; FliFC) in complex |
Co-Folding of a FliF-FliG Split Domain Forms the Basis of the MS:C Ring Interface within the Bacterial Flagellar Motor
|
Brian R Crane, David F Blair, Eun A Kim, Frederick W Dahlquist, Michael J Lynch, Ria J Sircar, Robert W Levenson |
30147 | 2017-05-04 | Chemical Shifts: 1 set |
Notch1 transmembrane and associated juxtamembrane segment |
Structural and biochemical differences between the Notch and the amyloid precursor protein transmembrane domains
|
Brett M Kroncke, Catherine L Deatherage, Charles R Sanders, Jarrod A Smith, Markus W Voehler, Robert L McFeeters, Sirui Ma, Zhenwei Lu |
26008 | 2016-06-03 | Chemical Shifts: 1 set |
Solution Structure of N-L-idosylated Pin1 WW Domain |
The Dependence of Carbohydrate-Aromatic Interaction Strengths on the Structure of the Carbohydrate
|
Che-Hsiung Hsu, Chi-Huey Wong, David A Case, David E Mortenson, Evan T Powers, Jane H Dyson, Jeffery W Kelly, Lachele B Foley, Robert J Woods, Sangho Park, Xiaocong Wang |
26005 | 2016-06-03 | Chemical Shifts: 1 set |
Solution Structure of N-Allosylated Pin1 WW Domain |
The Dependence of Carbohydrate-Aromatic Interaction Strengths on the Structure of the Carbohydrate
|
Che-Hsiung Hsu, Chi-Huey Wong, David A Case, David E Mortenson, Evan T Powers, Jane H Dyson, Jeffery W Kelly, Lachele B Foley, Robert J Woods, Sangho Park, Xiaocong Wang |
26006 | 2016-06-03 | Chemical Shifts: 1 set |
Solution Structure of N-Galactosylated Pin1 WW Domain |
The Dependence of Carbohydrate-Aromatic Interaction Strengths on the Structure of the Carbohydrate
|
Che-Hsiung Hsu, Chi-Huey Wong, David A Case, David E Mortenson, Evan T Powers, Jane H Dyson, Jeffery W Kelly, Lachele B Foley, Robert J Woods, Sangho Park, Xiaocong Wang |
26007 | 2016-06-03 | Chemical Shifts: 1 set |
Solution Structure of N-Xylosylated Pin1 WW Domain |
The Dependence of Carbohydrate-Aromatic Interaction Strengths on the Structure of the Carbohydrate
|
Che-Hsiung Hsu, Chi-Huey Wong, David A Case, David E Mortenson, Evan T Powers, Jane H Dyson, Jeffery W Kelly, Lachele B Foley, Robert J Woods, Sangho Park, Xiaocong Wang |
26745 | 2016-07-14 | Chemical Shifts: 1 set |
Backbone 1H, 13C, and 15N assignments for Sortase C1 (SrtC1) from Streptococcus pneumoniae |
The "Lid" in the Streptococcus pneumoniae SrtC1 Sortase Adopts a Rigid Structure that Regulates Substrate Access to the Active Site
|
Alex W Jacobitz, Emmanuel B Naziga, Jeff Wereszczynski, Michael E Jung, Robert Peterson, Robert T Clubb, Scott A McConnell, Yi Sung Wook |
25840 | 2016-08-15 | Chemical Shifts: 1 set |
Tetrameric i-motif structure of dT-dC-dC-CFL-CFL-dC at acidic pH |
Stabilization of i-motif structures by 2'-beta-fluorination of DNA
|
Anthony K Mittermaier, Carlos Gonzalez, Christopher J Wilds, Hala Abou-Assi, Masad J Damha, Nerea Martin-Pintado, Ramon Campos-Olivas, Robert W Harkness |
25806 | 2016-05-23 | Chemical Shifts: 1 set |
NMR structure of the prolactin receptor transmembrane domain |
A combined computational and structural model of the full-length human prolactin receptor
|
Birthe B Kragelund, Carol V Robinson, Elena Papaleo, Gitte W Haxholm, Johan G Olsen, Jonathan TS Hopper, Katrine Bugge, Kresten Lindorff-Larsen, Robert Dagil |
26538 | 2015-04-13 | Chemical Shifts: 1 set |
Short hydrophobic peptides with cyclic constraints are po-tent GLP-1R agonists. |
Short hydrophobic peptides with cyclic constraints are potent glucagon-like peptide-1 receptor (GLP-1R) agonists
|
Alan M Mathiowetz, Chris Limberakis, David A Griffith, David A Price, David J Edmonds, David P Fairlie, David R Derksen, David W Piotrowski, Huy N Hoang, Jacky Y Suen, Jane M Withka, Justin M Mitchell, Kun Song, Paula M Loria, Robert V Stanton, Spiros Liras, Timothy A Hill, Vincent Mascitti, W Mei Kok |
26537 | 2015-04-13 | Chemical Shifts: 1 set |
Short hydrophobic peptides with cyclic constraints are po-tent GLP-1R agonists. |
Short hydrophobic peptides with cyclic constraints are potent glucagon-like peptide-1 receptor (GLP-1R) agonists
|
Alan M Mathiowetz, Chris Limberakis, David A Griffith, David A Price, David J Edmonds, David P Fairlie, David R Derksen, David W Piotrowski, Huy N Hoang, Jacky Y Suen, Jane M Withka, Justin M Mitchell, Kun Song, Paula M Loria, Robert V Stanton, Spiros Liras, Timothy A Hill, Vincent Mascitti, W Mei Kok |
26536 | 2015-04-13 | Chemical Shifts: 1 set |
Short hydrophobic peptides with cyclic constraints are po-tent GLP-1R agonists. |
Short hydrophobic peptides with cyclic constraints are potent glucagon-like peptide-1 receptor (GLP-1R) agonists
|
Alan M Mathiowetz, Chris Limberakis, David A Griffith, David A Price, David J Edmonds, David P Fairlie, David R Derksen, David W Piotrowski, Huy N Hoang, Jacky Y Suen, Jane M Withka, Justin M Mitchell, Kun Song, Paula M Loria, Robert V Stanton, Spiros Liras, Timothy A Hill, Vincent Mascitti, W Mei Kok |
25517 | 2016-07-13 | Chemical Shifts: 1 set |
Short hydrophobic peptide, 11mer |
Short hydrophobic peptides with cyclic constraints are potent glucagon-like peptide-1 receptor (GLP-1R) agonists
|
Alan M Mathiowetz, Chris Limberakis, David A Griffith, David A Price, David J Edmonds, David P Fairlie, David R Derksen, David W Piotrowski, Huy N Hoang, Jacky Y Suen, Jane M Withka, Justin M Mitchell, Kun Song, Paula M Loria, Robert V Stanton, Spiros Liras, Timothy A Hill, Vincent Mascitti, W Mei Kok |
25247 | 2019-07-11 | Chemical Shifts: 1 set |
Chemical Shift 1H, 13C, 15N Assignments of FliG bound to unlabeled FliF C-terminal peptide |
Co-Folding of a FliF-FliG Split Domain Forms the Basis of the MS:C Ring Interface within the Bacterial Flagellar Motor
|
Brian R Crane, David F Blair, Eun A Kim, Frederick W Dahlquist, Michael J Lynch, Ria Sircar, Robert Levenson |
19979 | 2014-12-22 | Chemical Shifts: 1 set |
Solution structure of B24G insulin |
Protective hinge in insulin opens to enable its receptor engagement
|
Brian J Smith, Charles T Roberts, Colin W Ward, Donald F Steiner, Faramarz Ismail-Beigi, John G Menting, Jonathan Whittaker, Julie M Carroll, Linda J Whittaker, Michael A Weiss, Michael C Lawrence, Nalinda P Wickramasinghe, Natalie Strokes, Nelson B Phillips, Satya P Yadav, Shu Jin Chan, Vijay Pandyarajan, Virander S Chauhan, Wieslawa Milewski, Yanwu Yang, Zhu-li Wan |
19822 | 2014-08-25 | Chemical Shifts: 1 set |
NMR structure of B25-(alpha, beta)-dehydro-phenylalanine insulin |
Protective hinge in insulin opens to enable its receptor engagement
|
Brian J Smith, Charles T Roberts, Colin W Ward, Donald F Steiner, Faramarz Ismail-Beigi, John G Menting, Jonathan Whittaker, Julie M Carroll, Linda J Whittaker, Michael A Weiss, Michael C Lawrence, Nalinda P Wickramasinghe, Natalie Strokes, Nelson B Phillips, Satya P Yadav, ShuJin Chan, Vijay Pandyarajan, Virander S Chauhan, Wieslawa Milewski, Yanwu Yang, Zhu-li Wan |
19032 | 2013-06-17 | Chemical Shifts: 1 set |
Analysis of the structural and molecular basis of voltage-sensitive sodium channel inhibition by the spider toxin, Huwentoxin-IV ( -TRTX-Hh2a). |
Analysis of the Structural and Molecular Basis of Voltage-sensitive Sodium Channel Inhibition by the Spider Toxin Huwentoxin-IV (-TRTX-Hh2a).
|
Alan D Wickenden, Alan Gibbs, Amy Y Shih, Judith Connor, Mack Flinspach, Matthew Husovsky, Michael J Hunter, Natali A Minassian, Robert A Neff, Ross Fellows, Serena Nelson, Steven W Sutton, Tara Mirzadegan, Yi Liu |
19030 | 2013-06-17 | Chemical Shifts: 1 set |
Analysis of the structural and molecular basis of voltage-sensitive sodium channel inhibition by the spider toxin, Huwentoxin-IV ( -TRTX-Hh2a). |
Analysis of the Structural and Molecular Basis of Voltage-sensitive Sodium Channel Inhibition by the Spider Toxin Huwentoxin-IV (-TRTX-Hh2a).
|
Alan D Wickenden, Alan Gibbs, Amy Y Shih, Judith Connor, Mack Flinspach, Matthew Husovsky, Michael J Hunter, Natali A Minassian, Robert A Neff, Ross Fellows, Serena Nelson, Steven W Sutton, Tara Mirzadegan, Yi Liu |
19026 | 2013-06-17 | Chemical Shifts: 1 set |
Analysis of the structural and molecular basis of voltage-sensitive sodium channel inhibition by the spider toxin, Huwentoxin-IV ( -TRTX-Hh2a). |
Analysis of the Structural and Molecular Basis of Voltage-sensitive Sodium Channel Inhibition by the Spider Toxin Huwentoxin-IV (-TRTX-Hh2a).
|
Alan D Wickenden, Alan Gibbs, Amy Y Shih, Judith Connor, Mack Flinspach, Matthew Husovsky, Michael J Hunter, Natali A Minassian, Robert A Neff, Ross Fellows, Serena Nelson, Steven W Sutton, Tara Mirzadegan, Yi Liu |
18908 | 2013-02-21 | Chemical Shifts: 1 set |
Human programmed cell death 1 receptor |
Structure and interactions of the human programmed cell death 1 receptor.
|
Alasdair J Leslie, Alistair J Henry, Anand Radhakrishnan, Andreas Jansson, Chao Yu, Colin Stubberfield, Edward J Evans, Frederick W Muskett, Jiandong Huo, John E Ladbury, Lorna C Waters, Mark D Carr, Meryn Griffiths, Robert Griffin, Sara H Morgan, Shinji Ikemizu, Simon J Davis, Vaclav Veverka, Xiaoxiao Cheng |
18309 | 2012-06-13 | Chemical Shifts: 1 set |
Chemical Shift 1H, 13C, 15N Assignments of N-terminal domain of Thermotoga Maritima flagellar motor protein FliG |
Structural insights into the interaction between the bacterial flagellar motor proteins FliF and FliG.
|
Frederick W Dahlquist, Hongjun Zhou, Robert Levenson |
18310 | 2012-06-13 | Chemical Shifts: 1 set |
Chemical Shift 1H, 13C, 15N Assignments of N-terminal domain of Thermotoga Maritima flagellar motor protein FliG bound to unlabeled FliF C-terminal peptide |
Structural insights into the interaction between the bacterial flagellar motor proteins FliF and FliG.
|
Frederick W Dahlquist, Hongjun Zhou, Robert Levenson |
18152 | 2012-09-19 | Chemical Shifts: 1 set |
Backbone 1H, 13C, and 15N Chemical Shift Assignments for the catalytic domain of B. anthracis SrtD |
Solution structure of the sortase required for efficient production of infectious Bacillus anthracis spores.
|
Alex W Jacobitz, Martin L Phillips, Robert T Clubb, Scott A Robson |
17604 | 2011-06-01 | Chemical Shifts: 1 set |
Solution Structure of a Minor and Transiently Formed State of a T4 Lysozyme Mutant |
Solution structure of a minor and transiently formed state of a T4 lysozyme mutant.
|
Alaji Bah, Bruno E Correia, David Baker, D Flemming Hansen, Frederick W Dahlquist, Guillaume Bouvignies, Lewis E Kay, Oliver Lange, Pramodh Vallurupalli, Robert M Vernon |
17603 | 2011-06-01 | Chemical Shifts: 1 set |
Solution Structure of a Minor and Transiently Formed State of a T4 Lysozyme Mutant |
Solution structure of a minor and transiently formed state of a T4 lysozyme mutant.
|
Alaji Bah, Bruno E Correia, David Baker, D Flemming Hansen, Frederick W Dahlquist, Guillaume Bouvignies, Lewis E Kay, Oliver Lange, Pramodh Vallurupalli, Robert M Vernon |
17341 | 2012-06-06 | Binding_constants: 1 set |
1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine as a Substrate of Cytochrome P450 2D6: Allosteric Effects of NADPH-Cytochrome P450 Reductase |
1-Methyl-4-phenyl-1,2,3,6-tetrahydrophyridine as a Substrate of Cytochrome P450 2D6: Allosteric Effects of NADPH-Cytochrome P450 Reductase
|
C R Wolf, D E Gilham, G CK Roberts, LY Lian, M J Sutclffe, S Modi, W U Primrose |
17332 | 2012-07-25 | Chemical Shifts: 1 set |
Solution Structure of the talin Vbs2b domain |
High resolution NMR structure of gpW (W protein of bacteriophage lambda) at acidic pH
|
Alexandre R Gingras, Benjamin T Goult, David R Critchley, Gordon CK Roberts, Igor L Barsukov, Neil Bate |
17109 | 2014-03-04 | Chemical Shifts: 1 set |
The Structure of the Family D Sortase from Bacillus anthracis |
Solution structure of the sortase required for efficient production of infectious Bacillus anthracis spores.
|
Alex W Jacobitz, Martin L Phillips, Robert T Clubb, Scott A Robson |
16591 | 2010-02-01 | Chemical Shifts: 1 set |
1H and 15N chemical shifts for the immune inhibitory receptor LAIR-1 collagen binding domain |
Crystal structure and collagen-binding site of immune inhibitory receptor LAIR-1: unexpected implications for collagen binding by platelet receptor GPVI.
|
Eric G Huizinga, Hans Wienk, Hugo van Ingen, Joost Ballering, Linde Meyaard, Richard W Farndale, Robert Jan Lebbink, Rolf Boelens, Talitha de Ruiter, T Harma C Brondijk |
16428 | 2010-02-02 | Chemical Shifts: 1 set Residual Dipolar Couplings: 1 set |
The structure of the KlcA and ArdB proteins show a novel fold and antirestriction activity against Type I DNA restriction systems in vivo but not in vitro. |
The structure of the KlcA and ArdB proteins reveals a novel fold and antirestriction activity against Type I DNA restriction systems in vivo but not in vitro.
|
Andrew P Herbert, David TF Dryden, Dimitra Serfiotis-Mitsa, Dinesh C Soares, Dusan Uhrin, Gareth A Roberts, Garry W Blakely, John H White |
15998 | 2009-07-17 | Chemical Shifts: 1 set |
Chemical shifts of the b'-x region of human protein disulfide isomerase |
Mapping of the ligand-binding site on the b' domain of human PDI: interaction with peptide ligands and the x-linker region.
|
A Katrine Wallis, Ateesh Sidhu, Lee J Byrne, Lloyd W Ruddock, Mark J Howard, Richard A Williamson, Robert B Freedman |
15974 | 2009-07-17 | Chemical Shifts: 1 set |
Chemical shifts of the b-b'-x region of human protein disulfide isomerase |
Mapping of the ligand-binding site on the b' domain of human PDI: interaction with peptide ligands and the x-linker region.
|
A Katrine Wallis, Ateesh Sidhu, Lee J Byrne, Lloyd W Ruddock, Mark J Howard, Richard A Williamson, Robert B Freedman |
15591 | 2008-01-02 | Chemical Shifts: 1 set Residual Dipolar Couplings: 1 set |
NMR structure of the ubiquitin associated (UBA) domain of p62 (SQSTM1). RDC refined |
Ubiquitin recognition by the ubiquitin-associated domain of p62 involves a novel conformational switch
|
James R Cavey, Jed E Long, Mark S Searle, Paul W Sheppard, Robert Layfield, Stuart H Ralston, Thomas R Gallagher |
15592 | 2008-01-16 | Chemical Shifts: 1 set Residual Dipolar Couplings: 1 set |
NMR structure of the ubiquitin associated (UBA) domain of p62 (SQSTM1) in complex with ubiquitin. RDC refined |
Ubiquitin recognition by the ubiquitin-associated domain of p62 involves a novel conformational switch
|
James R Cavey, Jed E Long, Mark S Searle, Paul W Sheppard, Robert Layfield, Stuart H Ralston, Thomas R Gallagher |
15325 | 2007-07-24 | Chemical Shifts: 1 set |
C-terminal domain of ORF1p from mouse LINE-1 |
Identification and solution structure of a highly conserved C-terminal domain within ORF1p required for retrotransposition of long interspersed nuclear element-1
|
Dan Branciforte, Haihong Wu, Joseph A Loo, Juli Feigon, Kurt Januszyk, Patrick W Li, Robert T Clubb, Sandra L Martin, Valerie Villareal, Yongming Xie |
7319 | 2007-06-26 | Chemical Shifts: 1 set |
Polymerase Beta and Double gap double hairpin DNA |
NMR assignment of polymerase beta labeled with 2H, 13C, and 15N in complex with substrate DNA
|
Eugene F DeRose, Geoffrey A Mueller, Robert E London, Thomas W Kirby |
7150 | 2007-03-06 | Chemical Shifts: 1 set |
Chemical Shift Assignments for the talin F3 sub-domain in complex with a chimeric beta3-integrin/PIPKIg peptide |
Structural basis of integrin activation by talin
|
Anthony W Partridge, A R Pickford, Iain D Campbell, Jaewon Han, Kate L Wegener, Mark H Ginsberg, Robert C Liddington |
7034 | 2006-04-05 | Chemical Shifts: 1 set |
1H, 13C, and 15N chemical shift assignments for the zinc-finger region of human ZHX1 |
The tandem zinc-finger region of human ZHX adopts a novel C2H2 zinc finger structure with a C-terminal extension.
|
Anna Hotze, David K Stammers, David Stuart, Gert E Folkers, Hans Wienk, Ivonne Lammers, Jin Wu, Rainer W Wechselberger, Ray Owens, Robert Kaptein |
6571 | 2005-10-17 | Chemical Shifts: 1 set |
Chemical Shift Assignments for the theta subunit of DNA polymerase III from E. coli |
Nuclear Magnetic Resonance Solution Structure of the Escherichia coli DNA Polymerase III {theta} Subunit.
|
Dawei Li, Eugene F DeRose, Geoffrey A Mueller, Robert E London, Roel M Schaaper, Thomas W Kirby |
6254 | 2005-01-14 | Chemical Shifts: 1 set |
1H, 13C, and 15N Chemical Shift Assignments for I14A mutant of histidine-containing phosphocarrier protein from Staphylococcus carnosus |
Solution structure of the active-centre mutant I14A of the histidine-containing phosphocarrier protein from Staphylococcus carnosus
|
Andreas Moglich, Brigitte Koch, Eike Brunner, Hans Robert Kalbitzer, W Gronwald, Wolfgang Hengstenberg |
5931 | 2004-04-07 | Chemical Shifts: 1 set |
Dynamics of the RNase H Domain of HIV-1 Reverse Transcriptase in the Presence of Magnesium and AMP |
Solution structure of the RNase H domain of the HIV-1 reverse transciptase in the presence of magnesium.
|
Eugene F DeRose, Geoffrey A Mueller, Koteppa Pari, Robert E London, Thomas W Kirby |
5347 | 2003-02-25 | Chemical Shifts: 1 set |
Solution Structure of the RNase H Domain of the HIV-1 Reverse Transcriptase in Presence of Magnesium |
Solution Structure of the RNase H Domain of the HIV-1 Reverse Transcriptase in the Presence of Magnesium
|
Eugene F DeRose, Geoffrey A Mueller, Koteppa Pari, Robert E London, Thomas W Kirby |
5261 | 2002-09-10 | Chemical Shifts: 1 set |
Nuclease A Inhibitor (NuiA) Assignments |
The Nuclease A Inhibitor represents a new Variation of the Rare PR-1 Fold
|
Alfred Pingoud, Eugene F DeRose, Geoffrey A Mueller, Gregor Meiss, Mark S Lebetkin, Robert E London, Thomas W Kirby |
4426 | 2000-06-12 | Chemical Shifts: 1 set |
Solution Structure of Holo-biotinyl Domain from Acetyl Coenzyme A Carboxylase of Escherichia coli Determined by Triple-Resonance NMR Spectroscopy |
Solution Structure of Apo- and Holo-biotinyl Domain from Acetyl Coenzyme A Carboxylase of Escherichia coli Determined by Triple-Resonance NMR Spectroscopy
|
A Chapman-smith, E L Roberts, J C Wallace, J E Cronan, M J Howard, N Shu, R N Perham, R W Broadhurst, T Morris |
4425 | 1999-12-23 | Chemical Shifts: 1 set |
Solution structure of apo-biotinyl domain from acetyl coenzyme A carboxylase of Escherichia coli determined by triple-resonance NMR spectroscopy |
SOLUTION STRUCTURES OF APO- AND HOLO-BIOTINYL DOMAINS FROM ACETYL COENZYME A CARBOXYLASE OF ESCHERICHIA COLI DETERMINED BY TRIPLE-RESONANCE NMR SPECTROSCOP
|
A CHAPMAN-SMITH, E L ROBERTS, J C WALLACE, J E CRONAN, M J HOWARD, N SHU, R N PERHAM, R W BROADHURST, T MORRIS |
4035 | 2005-04-21 | Chemical Shifts: 1 set |
Solution Structure of the DNA-Binding Domain of a Human Papillomavirus E2 Protein: Evidence for Flexible DNA-Binding Regions |
Solution Structure of the DNA-Binding Domain of a Human Papillomavirus E2 Protein: Evidence for Flexible DNA-Binding Regions
|
Andrew M Petros, David A Egan, Heng Liang, Ho S Yoon, Karl Walter, Robert P Meadows, Stephen W Fesik, Terry Robins, Thomas F Holzman |
4049 | 1999-08-24 | Chemical Shifts: 1 set |
Solution Structure of the Amino-Terminal Fragment of Urokinase-Type Plasminogen Activator |
Solution Structure of the Amino-Terminal Fragment of Urokinase-Type Plasminogen Activator
|
Andrew M Petros, Andrew P Hansen, Andrew P Mazar, David G Nettesheim, Edward T Olejniczak, Jack Henkin, Robert P Meadows, Robert X Xu, Stephen W Fesik, Terry M Pederson |
999 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1482 | 1995-07-31 | Chemical Shifts: 1 set |
Two-Dimensional NMR and Structure Determination of Salmon Calcitonin in Methanol |
Two-Dimensional NMR and Structure Determination of Salmon Calcitonin in Methanol
|
Claude R Jones, David G Gorenstein, Edward P Nikonowicz, James W Bastian, Robert P Meadows |
1481 | 1995-07-31 | Chemical Shifts: 1 set |
Two-Dimensional NMR and Structure Determination of Salmon Calcitonin in Methanol |
Two-Dimensional NMR and Structure Determination of Salmon Calcitonin in Methanol
|
Claude R Jones, David G Gorenstein, Edward P Nikonowicz, James W Bastian, Robert P Meadows |
1002 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1003 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1001 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
994 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
995 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
996 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
997 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
998 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1025 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1024 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1023 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1022 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1021 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1020 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1019 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1018 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1017 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1016 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1015 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1014 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1013 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1012 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1011 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1010 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1009 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1008 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1007 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1000 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1006 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1005 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
1004 | 1995-07-31 | Chemical Shifts: 1 set |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin |
Sequence-specific 1H-NMR assignments for the aromatic region of several biologically active, monomeric insulins including native human insulin
|
Henning Thogersen, Jens Brange, Melinda Roy, M F Dunn, Niels C Kaarsholm, Robert W-K Lee |
142 | 1995-07-31 | Chemical Shifts: 1 set |
NMR Study of the Solution Conformation of Rat Atrial Natriuretic Factor 7-23 in Sodium Dodecyl Sulfate Micelles |
NMR Study of the Solution Conformation of Rat Atrial Natriuretic Factor 7-23 in Sodium Dodecyl Sulfate Micelles
|
E T Olejniczak, Robert T Gampe, Stephen W Fesik, T W Rockway |
2208 | 1995-07-31 | Chemical Shifts: 1 set |
1H, 13C and 15N backbone assignments of cyclophilin when bound to cyclosporin A (CsA) and preliminary structural characterization of the CsA binding site |
1H, 13C and 15N backbone assignments of cyclophilin when bound to cyclosporin A (CsA) and preliminary structural characterization of the CsA binding site
|
David G Nettesheim, E T Olejniczak, G Gemmecker, Jean Severin, Placido Neri, R Helfrich, Robert P Meadows, R Simmer, Stephen W Fesik, Thomas F Holzman, Timothy Logan |
1487 | 1999-06-14 | Chemical Shifts: 1 set |
A characterization of copper/zinc superoxide dismutase mutants at position 124 |
A characterization of copper/zinc superoxide dismutase mutants at position 124
|
Hiroshi Miyano, Ivano Bertini, James W Tung, Lucia Banci, Maria Silvia Viezzoli, Robert A Hallewell |
1323 | 1995-07-31 | Chemical Shifts: 1 set |
Investigation of the solution structures and mobility of oxidised and reduced cytochrome b5 by 2D NMR spectroscopy |
Investigation of the solution structures and mobility of oxidised and reduced cytochrome b5 by 2D NMR spectroscopy
|
David W Concar, David Whitford, Nigel C Veitch, Robert JP Williams |
1324 | 1995-07-31 | Chemical Shifts: 1 set |
Investigation of the solution structures and mobility of oxidised and reduced cytochrome b5 by 2D NMR spectroscopy |
Investigation of the solution structures and mobility of oxidised and reduced cytochrome b5 by 2D NMR spectroscopy
|
David W Concar, David Whitford, Nigel C Veitch, Robert JP Williams |
1486 | 1999-06-14 | Chemical Shifts: 1 set |
A characterization of copper/zinc superoxide dismutase mutants at position 124 |
A characterization of copper/zinc superoxide dismutase mutants at position 124
|
Hiroshi Miyano, Ivano Bertini, James W Tung, Lucia Banci, Maria Silvia Viezzoli, Robert A Hallewell |
2285 | 1999-06-14 | Chemical Shifts: 1 set |
Catalytic mechanism of serine proteases: Reexamination of the pH dependence of the histidyl 1J13C2-H coupling constant in the catalytic triad of alpha-lytic protease |
Catalytic mechanism of serine proteases: Reexamination of the pH dependence of the histidyl 1J13C2-H coupling constant in the catalytic triad of alpha-lytic protease
|
John D Roberts, John H Kaiser, John H Richards, William W Bachovchin |
1475 | 1999-06-14 | Chemical Shifts: 1 set |
Isotope-Edited NMR of Cyclosporin A Bound to Cyclophilin: Evidence for a Trans 9,10 Amide Bond |
Isotope-Edited NMR of Cyclosporin A Bound to Cyclophilin: Evidence for a Trans 9,10 Amide Bond
|
D A Egan, D H Rich, Jay R Luly, R Helfrich, Robert T Gampe, Rohinton P Edalji, R Simmer, Stephen W Fesik, Thomas F Holzman, V Kishore |