| Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
|---|---|---|---|---|---|
| 53036 | 2025-04-28 | Chemical Shifts: 2 sets Spectral_peak_list: 2 sets |
NMR chemical shifts and assignments for the 15N-tyrosine labeled V129I-b1AR construct of the Turkey B1-adrenergic receptor in complex with isoprenaline, arrestin2, and the phosphopeptide V2Rpp. |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53034 | 2025-04-28 | Chemical Shifts: 3 sets Spectral_peak_list: 3 sets |
NMR chemical shifts and assignments for the 15N-tyrosine labeled V129I-b1AR construct of the Turkey B1-adrenergic receptor in complex with isoprenaline. |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53033 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-valine labeled TS-b1AR construct of the Turkey b1-adrenergic receptor in complex with carvedilol, arrestin2, and the phosphopeptide V2Rpp. |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53032 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-valine labeled TS-b1AR construct of the Turkey b1-adrenergic receptor in complex with carvedilol. |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53031 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-tyrosine- and 15N-valine-labeled YY-b1AR construct of the Turkey b1-adrenergic receptor in complex with carvedilol, arrestin2, and the phosphopeptide V2Rpp. |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53030 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-tyrosine-labeled YY-b1AR construct of the Turkey b1-adrenergic receptor in complex with carvedilol in the presence of G protein-mimicking miniGs |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53029 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-tyrosine-labeled YY-b1AR construct of the Turkey b1-adrenergic receptor in complex with carvedilol in the presence of G protein-mimicking Nb80 |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53028 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-tyrosine- and 15N-valine-labeled YY-b1AR construct of the Turkey b1-adrenergic receptor in complex with isoprenaline and the G protein-mimicking Nb80 |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53027 | 2025-04-28 | Chemical Shifts: 3 sets Spectral_peak_list: 3 sets |
NMR chemical shifts and assignments for the 15N-tyrosine and 15N-valine labeled YY-b1AR construct of the turkey b1-adrenergic receptor in complex with the cyanopindolol |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53026 | 2025-04-28 | Chemical Shifts: 2 sets Spectral_peak_list: 2 sets |
NMR chemical shifts and assignments for the 15N-tyrosine and 15N-valine labeled YY-b1AR construct of the turkey b1-adrenergic receptor in complex with carvedilol |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53035 | 2025-04-28 | Chemical Shifts: 1 set Spectral_peak_list: 1 set |
NMR chemical shifts and assignments for the 15N-tyrosine labeled V129I-b1AR construct of the Turkey B1-adrenergic receptor in complex with isoprenaline and the G protein mimicking Nb80. |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 53017 | 2025-04-28 | Chemical Shifts: 2 sets Spectral_peak_list: 2 sets |
NMR Chemical Shifts and Assignments for the 15N-Tyrosine and 15N-Valine Labeled YY-b1AR Construct of the Turkey b1-Adrenergic Receptor in Complex with the Full Agonist Isoprenaline |
Arrestin recognizes GPCRs independently of the receptor state
|
Anne Grahl, Anne Spang, Dongchun Ni, Henning Stahlberg, Ivana Petrovic, Layara A Abiko, Meltem Tatli, Samit Desai, Stephan Grzesiek |
| 52798 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with ponatinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52808 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with bosutinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52797 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with nilotinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52811 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) apo |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52810 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with PD166326 |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52809 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with AMP-PNP |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52807 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with tozasertib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52806 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with danusertib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52805 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with staurosporine |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52804 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with dasatinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52803 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with axitinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52802 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with PD180970 |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52800 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with bafetinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52799 | 2025-09-05 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with rebastinib |
ATP Site Ligands Determine the Assembly State of the Abelson Kinase Regulatory Core via the Activation Loop Conformation.
|
Allan Joaquim J Lamontanara, Ines Hertel-Hering, Oliver Hantschel, Rajesh Sonti, Stephan Grzesiek |
| 52783 | 2025-10-04 | Chemical Shifts: 4 sets |
YYI-b1AR in complex with isoprenaline and Nanobody80 |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52784 | 2025-10-04 | Chemical Shifts: 1 set |
YYI-b1AR in complex with isoprenaline and DOTA-Tm tagged Nanobody80-T57C |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52782 | 2025-10-04 | Chemical Shifts: 4 sets |
YYI-b1AR in complex with carvedilol |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52781 | 2025-10-04 | Chemical Shifts: 4 sets |
YYI-b1AR in complex with isoprenaline |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52780 | 2025-10-04 | Chemical Shifts: 1 set |
YY-b1AR in complex with carvedilol and DOTA-Tm tagged nanobody60-D107C |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52776 | 2025-10-04 | Chemical Shifts: 2 sets |
YY-b1AR in complex with carvedilol and DOTA-Tm tagged nanobody60-Q39C |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52773 | 2025-10-04 | Chemical Shifts: 2 sets |
YY-b1AR in complex with isoprenaline and Nanobody80 |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52774 | 2025-10-04 | Chemical Shifts: 2 sets |
YY-b1AR in complex with carvedilol and nanobody60 |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52775 | 2025-10-04 | Chemical Shifts: 1 set |
YY-b1AR in complex with isoprenaline and DOTA-Tm tagged Nanobody80 |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52765 | 2025-10-04 | Chemical Shifts: 2 sets |
YY-b1AR in complex with carvedilol |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52761 | 2025-10-04 | Chemical Shifts: 4 sets |
YY-b1AR in complex with isoprenaline |
Activation dynamics traced through a G protein coupled receptor by 81 1H-15N NMR probes
|
Anne Grahl, Daniel Haussinger, Feng-Jie Wu, Layara A Abiko, Pascal S Rieder, Stephan Grzesiek |
| 52339 | 2024-03-01 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with imatinib |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52310 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with PD166326 |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52305 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform E528K SH3-SH2-KD (aa 83-534) apo |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52307 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with GNF-5 |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52306 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform E528K SH3-SH2-KD (aa 83-534) in complex with imatinib |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52301 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-515) apo |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52302 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-515) in complex with imatinib |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52300 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-517) in complex with imatinib |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52296 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-519) apo |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52298 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-517) apo |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52297 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-519) in complex with imatinib |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52293 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) in complex with asciminib |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 52273 | 2024-02-19 | Chemical Shifts: 1 set |
Abl 1b isoform wild type SH3-SH2-KD (aa 83-534) apo |
The molecular basis of Abelson kinase regulation by its aI-helix
|
Annalena Maier, Ines Hertel, Johannes Paladini, Judith M Habazettl, Rajesh Sonti, Stephan Grzesiek |
| 50001 | 2020-09-21 | Chemical Shifts: 1 set Heteronuclear NOE Values: 1 set T1 Relaxation Values: 1 set T2 Relaxation Values: 2 sets Order Parameters: 1 set |
Solution structure of protein ARR_CleD in complex with c-di-GMP |
Intercepting second-messenger signaling by rationally designed peptides sequestering c-di-GMP
|
Chee-Seng S Hee, Christoph Schmutz, Judith Habazettl, Stephan Grzesiek, Tilman Schirmer, Urs Jenal |
| 27990 | 2020-09-21 | Chemical Shifts: 1 set |
1H, 13C and 15N assignments of apo ARR_CleD. ARR_CleD is an arginine rich peptide that binds the second messenger c-di-GMP |
Intercepting second-messenger signaling by rationally designed peptides sequestering c-di-GMP
|
Chee-Seng S Hee, Christoph Schmutz, Judith Habazettl, Stephan Grzesiek, Tilman Schirmer, Urs Jenal |
| 27179 | 2019-03-15 | Chemical Shifts: 1 set Heteronuclear NOE Values: 2 sets T1 Relaxation Values: 2 sets T2 Relaxation Values: 2 sets |
Backbone 1H, 13C, and 15N Chemical Shift Assignments for the Hepatitis B Virus X protein (HBx) |
1H, 15N, 13C assignments and 15N relaxation data of the intrinsically disordered hepatitis B virus X protein (HBx) in a detergent mixture
|
Leonildo Delgado, Stephan Grzesiek |
| 19422 | 2014-12-08 | Chemical Shifts: 1 set |
Structural Basis of a Thiopeptide Antibiotic Multidrug Resistance System from Streptomyces lividans:Nosiheptide in Complex with TipAS |
Structural Basis of a Thiopeptide Antibiotic Multidrug Resistance System from Streptomyces lividans
|
J rgen Sass, Judith Habazettl, Martin Allan, Pernille Jensen, Stephan Grzesiek |
| 19421 | 2015-07-24 | Chemical Shifts: 1 set |
Structural Basis of a Thiopeptide Antibiotic Multidrug Resistance System from Streptomyces lividans:Promothiocin A in Complex with TipAS |
Structural Basis of a Thiopeptide Antibiotic Multidrug Resistance System from Streptomyces lividans
|
Hans-Juergen Sass, Judith Habazettl, Martin G Allan, Pernille Jensen, Stephan Grzesiek |
| 19335 | 2014-02-04 | Chemical Shifts: 1 set Heteronuclear NOE Values: 1 set T1 Relaxation Values: 1 set T2 Relaxation Values: 1 set |
NMR assignments and relaxation of 5P12-RANTES-E66S |
Characterization of structure, dynamics, and detergent interactions of the anti-HIV chemokine variant 5P12-RANTES
|
Maciej Wiktor, Oliver Hartley, Stephan Grzesiek |
| 19336 | 2014-02-04 | Chemical Shifts: 1 set |
NMR assignments of 5P12-RANTES-E66S in the presence of dodecylphosphocholine |
Characterization of structure, dynamics, and detergent interactions of the anti-HIV chemokine variant 5P12-RANTES
|
Maciej Wiktor, Oliver Hartley, Stephan Grzesiek |
| 18610 | 2013-02-12 | Chemical Shifts: 2 sets |
1H, 13C and 15N assignments of Ubiquitin for both folded and denatured states at 258K and 2500 bar |
High-pressure NMR reveals close similarity between cold and alcohol protein denaturation in ubiquitin.
|
Lydia Nisius, Maciej Wiktor, Navratna Vajpai, Stephan Grzesiek |
| 18611 | 2013-02-12 | Chemical Shifts: 1 set |
Pressure & methanol-induced A-state of Ubiquitin |
High-pressure NMR reveals close similarity between cold and alcohol protein denaturation in ubiquitin.
|
Lydia Nisius, Maciej Wiktor, Navratna Vajpai, Stephan Grzesiek |
| 17496 | 2011-06-01 | Chemical Shifts: 1 set |
Solution Structure of the PilZ Domain Protein PA4608 Complex with Cyclic Di-GMP Identifies Charge Clustering as Molecular Readout |
Solution Structure of the PilZ Domain Protein PA4608 Complex with Cyclic di-GMP Identifies Charge Clustering as Molecular Readout.
|
Judith Habazettl, Martin G Allan, Stephan Grzesiek, Urs Jenal |
| 17225 | 2010-11-10 | Binding_constants: 1 set |
The Solution Structure and DNA-binding Properties of the Cold-shock Domain of the Human Y-box Protein YB-1 |
The Solution Structure and DNA-binding Properties of the Cold-shock Domain of the Human Y-box Protein YB-1
|
Astrid Hoffmann, Cathelijne PAM Kloks, Christian AEM Spronk, Cornelis W Hilbers, Edwin Lasonder, Geerten W Vuister, Stephan Grzesiek |
| 17029 | 2011-10-28 | Chemical Shifts: 1 set |
1H, 15N and 13C assignments for the potential GTPase binding domain of dictyostelium discoideum Fomin C |
Structure, Dynamics, Lipid Binding, and Physiological Relevance of the Putative GTPase-binding Domain of Dictyostelium Formin C.
|
Alexander Junemann, Andre Schonichen, Barbara E Stopschinski, Hans J Sass, Jan Faix, Matthias Geyer, Sonja A Dames, Stephan Grzesiek |
| 16803 | 2010-04-28 | Chemical Shifts: 1 set |
1H, 13C and 15N backbone and side chain resonance assignment of the human RANTES-E66S mutant in a dimeric form |
1H, 13C and 15N backbone and side chain resonance assignment of the human RANTES-E66S mutant in a dimeric form
|
Andrej Bieri, Stephan Grzesiek |
| 16627 | 2010-01-25 | Chemical Shifts: 1 set |
Backbone and stereospecific beta-sidechain assignments of 1H, 13C and 15N for Protein G Unfolded in 7.4M Urea, pH 2.0. |
Side-chain chi(1) conformations in urea-denatured ubiquitin and protein G from (3)J coupling constants and residual dipolar couplings.
|
Jie-Rong Huang, Martin Blackledge, Martin Gentner, Navratna Vajpai, Stephan Grzesiek |
| 16626 | 2010-01-25 | Chemical Shifts: 1 set |
Backbone and stereospecific beta-sidechain assignments of 1H, 13C and 15N for Ubiquitin Unfolded in 8M Urea, pH2.5. |
Side-chain chi(1) conformations in urea-denatured ubiquitin and protein G from (3)J coupling constants and residual dipolar couplings.
|
Jie-Rong Huang, Martin Blackledge, Martin Gentner, Navratna Vajpai, Stephan Grzesiek |
| 15488 | 2008-03-31 | Chemical Shifts: 1 set |
Backbone 1H, 15N, 13CO and 13CA resonance assignment of ABL kinase domain in complex with imatinib |
Backbone NMR resonance assignment of the Abelson kinase domain in complex with imatinib
|
Andre Strauss, Gabriele Fendrich, Navratna Vajpai, Paul W Manley, Sandra W Cowan-Jacob, Stephan Grzesiek, Wolfgang Jahnke |
| 15047 | 2006-12-11 | Chemical Shifts: 1 set |
Ubiquitin in 8 M Urea |
Direct Observation of Dipolar Couplings and Hydrogen Bonds across a beta-hairpin in 8 M Urea
|
Mark Strohmeier, Martin Blackledge, Sebastian Meier, Stephan Grzesiek |
| 7268 | 2007-01-09 | Chemical Shifts: 1 set |
1H, 13C, and 15N Chemical Shift Assignments for the N-terminal Extracellular Domain of Truncated Cadherin |
1H, 13C, and 15N chemical shift assignments for the N-terminal extracellular domain of T-cadherin
|
Daniel Haussinger, Eunjung Bang, Joerg Stetefeld, Sonja A Dames, Stephan Grzesiek, Thomas Ahrens |
| 6985 | 2006-09-07 | Chemical Shifts: 1 set |
Backbone 1H, 13C, and 15N Chemical Shift Assignments for the human Hexim1 TBD |
NMR assignment of the Cyclin T-binding domain of human Hexim 1
|
Andre Schoenichen, Matthias Geyer, Sonja A Dames, Stephan Grzesiek |
| 6497 | 2021-04-29 | Coupling Constants: 7 sets |
Magnetic Field Dependence of Nitrogen-Proton J Splittings in 15N-Enriched Human Ubiquitin Resulting from Relaxation Interference and Residual Dipolar Coupling |
Magnetic Field Dependence of Nitrogen-Proton J Splittings in 15N-Enriched Human Ubiquitin Resulting from Relaxation Interference and Residual Dipolar Coupling
|
Ad Bax, Nico Tjandra, Stephan Grzesiek |
| 6200 | 2004-09-07 | Chemical Shifts: 1 set |
Assignment of the minicollagen 1 cysteine rich domain |
Determination of a high-precision NMR structure of the minicollagen cysteine rich domain from Hydra and characterization of its disulfide bond formation
|
Daniel Haussinger, Elena Pokidysheva, Hans P Bachinger, Sebastian Meier, Stephan Grzesiek |
| 5706 | 2003-05-22 | Chemical Shifts: 1 set |
Antibiotic binding domain of a TipA-class multidrug resistance transcriptional regulator |
Structural Basis for Antibiotic Recognition by the TipA Class of Multidrug-resistance Transcriptional Regulators
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Charles J Thompson, Hans Juergen Sass, Haruo Seto, Jan D Kahmann, Martin G Allan, Stephan Grzesiek |
| 5474 | 2003-02-03 | Chemical Shifts: 1 set |
Backbone resonance assignment of the 298 amino acid catalytic domain of protein tyrosine phosphatase 1B (PTP1B) |
Letter to the Editor: Backbone resonance assignment of the 298 amino acid catalytic domain of protein tyrosine phosphatase 1B (PTP1B)
|
Isidoros Vlattas, James Koehn, James Wareing, Lawrence P Wennogle, Sebastian Meier, Stephan Grzesiek, Wolfgang Jahnke, Yu-Chin Li |
| 5076 | 2002-11-19 | Chemical Shifts: 3 sets Coupling Constants: 3 sets Heteronuclear NOE Values: 2 sets T1 Relaxation Values: 6 sets |
Resonance Assignment of the unfolded states of Cold Shock Domain of the human YB-1 protein |
Resonance Assignment and Secondary Structure of the Cold Shock Domain of the Human YB-1 Protein
|
Astrid Hoffmann, Cathelijne PAM Kloks, Cornelis W Hilbers, Geerten W Vuister, James G Omichinski, Stephan Grzesiek |
| 4670 | 2000-04-12 | Chemical Shifts: 1 set |
Sequence-specific 1H,13C and 15N chemical shift backbone NMR assignment and secondary structure of the Arabidopsis thaliana PIN1At |
Letter to the Editor: Sequence-specific 1H, 13C and 15N chemical shift backbone NMR assignment and secondary structure of the Arabidopsis thaliana PIN1At protein
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Benoit Odaert, Dirk Inze, Guy Lippens, Isabelle Landrieu, Jean-Michel Wieruszeski, Stephan Grzesiek |
| 4147 | 1999-02-07 | Chemical Shifts: 1 set Coupling Constants: 1 set |
Resonance Assignment and Secondary Structure of the Cold Shock Domain of the Human YB-1 Protein |
Resonance Assignment and Secondary Structure of the Cold Shock Domain of the Human YB-1 Protein
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Astrid Hoffmann, Cathelijne PAM Kloks, Cornelis W Hilbers, Geerten W Vuister, James G Omichinski, Stephan Grzesiek |