Entry ID | Original Release date | Data summary | Entry Title | Citation Title | Authors |
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34884 | 2024-12-02 | Chemical Shifts: 1 set |
Structure of peptide CpRE12 bound to DPC micelle |
In silico prediction and analysis of novel cell-penetrating peptide
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A Taldaev, D Maltsev, E Bocharov, E Grafskaia, F Kornilov, I Latsis, M Serebrennikova, P Bashkirov, V Lazarev |
34662 | 2022-09-02 | Chemical Shifts: 1 set |
Structure of Insulin receptor-related receptor's transmembrane domain |
Diversity of Structural, Dynamic, and Environmental Effects Explain a Distinctive Functional Role of Transmembrane Domains in the Insulin Receptor Subfamily
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Aisha R Idiatullina, Alexander S Arseniev, Alina A Gavrilenkova, Andrey S Kuznetsov, Eduard V Bocharov, Igor E Deyev, Konstantin V Pavlov, Oleg V Batishchev, Olga T Zangieva, Olga V Bocharova, Oxana V Serova, Roman G Efremov, Sergey A Usanov, Sofya M Dolotova, Tatiana V Rakitina, Vladimir V Britikov, Yaroslav V Bershatsky |
34657 | 2022-09-02 | Chemical Shifts: 1 set |
Structure of Insulin-like growth factor 1 receptor's transmembrane domain |
Diversity of Structural, Dynamic, and Environmental Effects Explain a Distinctive Functional Role of Transmembrane Domains in the Insulin Receptor Subfamily
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Aisha R Idiatullina, Alexander S Arseniev, Alina A Gavrilenkova, Andrey S Kuznetsov, Eduard V Bocharov, Igor E Deyev, Konstantin V Pavlov, Oleg V Batishchev, Olga T Zangieva, Olga V Bocharova, Oxana V Serova, Roman G Efremov, Sergey A Usanov, Sofya M Dolotova, Tatiana V Rakitina, Vladimir V Britikov, Yaroslav V Bershatsky |
34656 | 2022-08-22 | Chemical Shifts: 1 set |
Structure of Insulin-like growth factor 1 receptor's transmembrane domain |
Diversity of Structural, Dynamic, and Environmental Effects Explain a Distinctive Functional Role of Transmembrane Domains in the Insulin Receptor Subfamily
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Aisha R Idiatullina, Alexander S Arseniev, Alina A Gavrilenkova, Andrey S Kuznetsov, Eduard V Bocharov, Igor E Deyev, Konstantin V Pavlov, Oleg V Batishchev, Olga T Zangieva, Olga V Bocharova, Oxana V Serova, Roman G Efremov, Sergey A Usanov, Sofya M Dolotova, Tatiana V Rakitina, Vladimir V Britikov, Yaroslav V Bershatsky |
34578 | 2021-01-25 | Chemical Shifts: 1 set |
Dynamic complex between all-D-enantiomeric peptide D3 with L723P mutant of amyloid precursor protein (APP) 672-726 fragment (amyloid beta 1-55) |
All - d - Enantiomeric Peptide D3 Designed for Alzheimer's Disease Treatment Dynamically Interacts with Membrane-Bound Amyloid-beta Precursors
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Alexander S Arseniev, Anatoly S Urban, Andreas Muller-Schiffmann, Anna V Kamynina, Daniil A Kornilov, Dieter Willbold, Eduard V Bocharov, Ivan S Okhrimenko, Janine Kutzsche, Kirill D Nadezhdin, Lothar Gremer, Najoua Bolakhrif, Norbert A Dencher, Olga V Bocharova, Pavel E Volynsky, Pavel K Kuzmichev, Roman G Efremov, Valentin I Gordeliy, Yuliya A Zagryadskaya |
34577 | 2021-01-25 | Chemical Shifts: 1 set |
Dynamic complex between all-D-enantiomeric peptide D3 with wild-type amyloid precursor protein 672-726 fragment (amyloid beta 1-55) |
All - d - Enantiomeric Peptide D3 Designed for Alzheimer's Disease Treatment Dynamically Interacts with Membrane-Bound Amyloid-beta Precursors
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Alexander S Arseniev, Anatoly S Urban, Andreas Muller-Schiffmann, Anna V Kamynina, Daniil A Kornilov, Dieter Willbold, Eduard V Bocharov, Ivan S Okhrimenko, Janine Kutzsche, Kirill D Nadezhdin, Lothar Gremer, Najoua Bolakhrif, Norbert A Dencher, Olga V Bocharova, Pavel E Volynsky, Pavel K Kuzmichev, Roman G Efremov, Valentin I Gordeliy, Yuliya A Zagryadskaya |
34460 | 2020-12-14 | Chemical Shifts: 1 set |
Cytochrome C from Thioalkalivibrio paradoxus |
Cytochrome C from Thioalkalivibrio paradoxus
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D A Altukhov, E V Bocharov, N I Dergousova, T V Rakitina, T V Tikhonova, V I Timofeev, V O Popov |
34164 | 2018-04-06 | Chemical Shifts: 1 set |
Putative inactive (dormant) dimeric state of GHR transmembrane domain |
Structural basis of the signal transduction via transmembrane domain of the human growth hormone receptor.
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A S Arseniev, A S Urban, D M Lesovoy, E V Bocharov, K V Pavlov, O V Bocharova, P E Volynsky, R G Efremov |
34160 | 2018-04-06 | Chemical Shifts: 1 set |
Putative active dimeric state of GHR transmembrane domain |
Structural basis of the signal transduction via transmembrane domain of the human growth hormone receptor.
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A S Arseniev, A S Urban, D M Lesovoy, E V Bocharov, K V Pavlov, O V Bocharova, P E Volynsky, R G Efremov |
34154 | 2017-11-17 | Chemical Shifts: 1 set |
NMR spatial structure of HER2 TM domain dimer in DPC micelles |
NMR relaxation parameters of methyl groups as a tool to map the interfaces of helix-helix interactions in membrane proteins.
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A S Arseniev, D M Lesovoy, E V Bocharov, K S Mineev, O V Bocharova, P E Bragin |
34040 | 2017-03-30 | Chemical Shifts: 1 set |
N-terminal motif dimerization of EGFR transmembrane domain in bicellar environment |
The Conformation of the Epidermal Growth Factor Receptor Transmembrane Domain Dimer Dynamically Adapts to the Local Membrane Environment.
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A A Polyansky, A S Arseniev, E V Bocharov, K S Mineev, K V Pavlov, O V Bocharova, P E Bragin, P E Volynsky, R G Efremov |
25452 | 2015-12-07 | Chemical Shifts: 1 set |
Omega-Tbo-IT1 selective inhibitor of insect calcium channels isolated from Tibellus oblongus spider venom |
omega-Tbo-IT1-New Inhibitor of Insect Calcium Channels Isolated from Spider Venom
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Alexander N Mikov, Alexey V Lipkin, Denis B Tikhonov, Dmitry A Altukhov, Eduard V Bocharov, Ekaterina E Maleeva, Eugene V Grishin, Irina M Fedorova, Natalia N Potapieva, Sergey A Kozlov, Timur N Bozin |
18804 | 2013-10-22 | Chemical Shifts: 1 set |
Homodimeric transmembrane domain of the human receptor tyrosine kinase ErbB1 (EGFR, HER1) in micelles |
Homodimeric transmembrane domain of the human receptor tyrosine kinase ErbB1 (EGFR, HER1) in micelles
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Alexander S Arseniev, Dmitry M Lesovoy, Eduard V Bocharov, Olga V Bocharova, Yulia E Pustovalova |
16658 | 2010-05-20 | Chemical Shifts: 1 set |
Heterodimeric association of Transmembrane domains of ErbB1 and ErbB2 receptors Enabling Kinase Activation |
Spatial structure of the transmembrane domain heterodimer of ErbB1 and ErbB2 receptor tyrosine kinases.
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Alexander S Arseniev, Eduard V Bocharov, Konstantin S Mineev, Olga V Bocharova, Vladimir V Chupin, Yulia E Pustovalova |
16005 | 2010-05-06 | Chemical Shifts: 1 set |
EphA2 dimeric structure in the lipidic bicelle at pH 5.0 |
Left-handed dimer of EphA2 transmembrane domain: Helix packing diversity among receptor tyrosine kinases.
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Alexander S Arseniev, Alexey A Schulga, Eduard V Bocharov, Elena N Tkach, Konstantin S Mineev, Maxim L Mayzel, Pavel E Volynsky, Roman G Efremov, Yaroslav S Ermolyuk |
15728 | 2008-09-02 | Chemical Shifts: 1 set Coupling Constants: 2 sets Heteronuclear NOE Values: 1 set T1 Relaxation Values: 1 set T2 Relaxation Values: 1 set |
NMR structures of dimeric transmembrane domain of the receptor tyrosine kinase EphA1 in lipid bicelles at pH 4.3 |
Spatial structure and pH-dependent conformational diversity of dimeric transmembrane domain of the receptor tyrosine kinase EphA1
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Alexander S Arseniev, Alexey A Schulga, Eduard V Bocharov, Elena O Artemenko, Marina V Goncharuk, Maxim L Mayzel, Pavel E Volynsky, Roman G Efremov, Yaroslav S Ermolyuk |
15231 | 2008-02-20 | Chemical Shifts: 1 set Coupling Constants: 1 set |
ErbB2TM |
Spatial structure of the dimeric transmembrane domain of the growth factor receptor ErbB2 presumably corresponding to the receptor active state
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A G Sobol, Alexander S Arseniev, Eduard V Bocharov, E N Tkach, Konstantin S Mineev, M P Kirpichnikov, Pavel E Volynsky, R G Efremov, V V Chupin, Y S Ermolyuk |
15056 | 2007-10-16 | Chemical Shifts: 1 set |
Antiamoebin-I in methanol solution - rapid exchange between right- and left-handed 3-10-helical conformations |
Antiamoebin I in methanol solution: rapid exchange between right-handed and left-handed 3(10)-helical conformations
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A A Tagaev, Alexander S Paramonov, A S Arseniev, D A Skladnev, E V Bocharov, I A Kudelina, Kirill D Nadezhdin, T V Ovchinnikova, Zakhar O Shenkarev, Z A Yakimenko |
7288 | 2007-05-10 | Chemical Shifts: 1 set Heteronuclear NOE Values: 1 set T1 Relaxation Values: 1 set T2 Relaxation Values: 1 set H Exchange Rates: 1 set |
1H, 13C, 15N Chemical Shift Assignments and 15N Relaxation Data for Transmembrane Domain of BNIP3 |
Unique dimeric structure of BNip3 transmembrane domain suggests membrane permeabilization as a cell death trigger.
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Alexander S Arseniev, Alexey A Schulga, Dmitry V Karpunin, Eduard V Bocharov, Innokenty V Maslennikov, Konstantin V Pavlov, Marina V Goncharuk, Michail P Kirpichnikov, Pavel E Volynsky, Roman G Efremov, Yaroslav S Ermolyuk, Yulia E Pustovalova |
7205 | 2007-01-09 | Chemical Shifts: 1 set Coupling Constants: 1 set T1 Relaxation Values: 1 set T2 Relaxation Values: 1 set |
1H, 13C, and 15N Chemical Shift Assignments for Transmembrane Segment of ErbB4 |
Spatial structure of the dimeric transmembrane domain of the growth factor receptor ErbB2 presumably corresponding to the receptor active state
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A G Sobol, Alexander S Arseniev, Eduard V Bocharov, E N Tkach, Konstantin S Mineev, M P Kirpichnikov, Pavel E Volynsky, R G Efremov, V V Chupin, Y S Ermolyuk |
4815 | 2000-11-13 | Chemical Shifts: 1 set Coupling Constants: 1 set |
NMR structure of Cardiotoxin in DPC-micelle |
Membrane Binding Motif of the P-type Cardiotoxin
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A S Arseniev, D V Dementieva, E V Bocharov, P V Dubovskii, Yu N Utkin |
4418 | 1999-11-24 | Chemical Shifts: 1 set Coupling Constants: 1 set |
NMR structure with tightly bound water molecules of cytotoxin II (cardiotoxin) from Naja naja oxiana in aqueous solution (minor form) |
Two forms of cytotoxin II (cardiotoxin) from Naja naja oxiana in aqueous solution. Spatial structures with tightly bound water molecules
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A S Arseniev, D V Dementieva, E V Bocharov |
4419 | 1999-11-12 | Chemical Shifts: 1 set Coupling Constants: 1 set |
NMR structure with tightly bound water molecules of cytotoxin II (cardiotoxin) from Naja naja oxiana in aqueous solution (major form) |
Two forms of cytotoxin II (cardiotoxin) from Naja naja oxiana in aqueous solution. Spatial structures with tightly bound water molecules
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A S Arseniev, D V Dementieva, E V Bocharov |