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PDB: 17170 件

8WDV
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Photosynthetic LH1-RC complex from the purple sulfur bacterium Allochromatium vinosum purified by Ca2+-DEAE
分子名称: (1R)-2-{[{[(2S)-2,3-DIHYDROXYPROPYL]OXY}(HYDROXY)PHOSPHORYL]OXY}-1-[(PALMITOYLOXY)METHYL]ETHYL (11E)-OCTADEC-11-ENOATE, (2S)-3-hydroxypropane-1,2-diyl dihexadecanoate, Antenna complex alpha/beta subunit, ...
著者Tani, K, Kanno, R, Harada, A, Kobayashi, A, Minamino, A, Nakamura, N, Ji, X.-C, Purba, E.R, Hall, M, Yu, L.-J, Madigan, M.T, Mizoguchi, A, Iwasaki, K, Humbel, B.M, Kimura, Y, Wang-Otomo, Z.-Y.
登録日2023-09-16
公開日2024-02-21
最終更新日2024-05-08
実験手法ELECTRON MICROSCOPY (2.24 Å)
主引用文献High-resolution structure and biochemical properties of the LH1-RC photocomplex from the model purple sulfur bacterium, Allochromatium vinosum.
Commun Biol, 7, 2024
3QPL
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G106W mutant of EthR from Mycobacterium tuberculosis
分子名称: HTH-type transcriptional regulator EthR
著者Carette, X, Willery, E, Hoos, S, Lecat-Guillet, N, Frenois, F, Dirie, B, Villeret, V, England, P, Deprez, B, Locht, C, Willand, N, Baulard, A.
登録日2011-02-14
公開日2011-12-28
最終更新日2023-09-13
実験手法X-RAY DIFFRACTION (3.2 Å)
主引用文献Structural activation of the transcriptional repressor EthR from Mycobacterium tuberculosis by single amino acid change mimicking natural and synthetic ligands.
Nucleic Acids Res., 40, 2012
6S91
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Cryo-EM structure of the Type III-B Cmr-beta bound to cognate target RNA and AMPPnP, state 2
分子名称: CRISPR-associated RAMP protein, Cmr4 family, Cmr6 family, ...
著者Sofos, N, Montoya, G, Stella, S.
登録日2019-07-11
公開日2020-07-08
最終更新日2020-09-16
実験手法ELECTRON MICROSCOPY (2.68 Å)
主引用文献Structures of the Cmr-beta Complex Reveal the Regulation of the Immunity Mechanism of Type III-B CRISPR-Cas.
Mol.Cell, 79, 2020
6CM2
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BU of 6cm2 by Molmil
SAMHD1 HD domain bound to decitabine triphosphate
分子名称: 6-amino-3-{2-deoxy-5-O-[(R)-hydroxy{[(S)-hydroxy(phosphonooxy)phosphoryl]oxy}phosphoryl]-beta-D-erythro-pentofuranosyl}-3,4-dihydro-1,3,5-triazin-2(1H)-one, Deoxynucleoside triphosphate triphosphohydrolase SAMHD1, GUANOSINE-5'-TRIPHOSPHATE, ...
著者Oellerich, T, Schneider, C, Thomas, D, Knecht, K.M, Buzovetsky, O, Kaderali, L, Schliemann, C, Bohnenberger, H, Angenendt, L, Hartmann, W, Wardelmann, E, Rothenburger, T, Mohr, S, Scheich, S, Comoglio, F, Wilke, A, Strobel, P, Serve, H, Michaelis, M, Ferreiros, N, Geisslinger, G, Xiong, Y, Keppler, O.T, Cinatl, J.
登録日2018-03-02
公開日2019-06-19
最終更新日2023-10-04
実験手法X-RAY DIFFRACTION (2.14 Å)
主引用文献Selective inactivation of hypomethylating agents by SAMHD1 provides a rationale for therapeutic stratification in AML.
Nat Commun, 10, 2019
6CNA
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GluN1-GluN2B NMDA receptors with exon 5
分子名称: 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, Glutamate receptor ionotropic, ...
著者Furukawa, H, Grant, T, Grigorieff, N.
登録日2018-03-07
公開日2018-10-03
最終更新日2024-10-23
実験手法ELECTRON MICROSCOPY (4.6 Å)
主引用文献Structural Mechanism of Functional Modulation by Gene Splicing in NMDA Receptors.
Neuron, 98, 2018
2MCN
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Distinct ubiquitin binding modes exhibited by SH3 domains: molecular determinants and functional implications
分子名称: CD2-associated protein, Ubiquitin
著者Ortega-Roldan, J, Salmon, L, Azuaga, A, Blackledge, M, Van Nuland, N.
登録日2013-08-22
公開日2014-02-05
最終更新日2024-05-15
実験手法SOLUTION NMR
主引用文献Distinct ubiquitin binding modes exhibited by SH3 domains: molecular determinants and functional implications.
Plos One, 8, 2013
6CHF
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Crystal structure of a Fc fragment LALA mutant (L234A, L235A) of human IgG1 (crystal form 1)
分子名称: 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-2)-alpha-D-mannopyranose-(1-3)-[2-acetamido-2-deoxy-beta-D-glucopyranose-(1-2)-alpha-D-mannopyranose-(1-6)]beta-D-mannopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-[alpha-L-fucopyranose-(1-6)]2-acetamido-2-deoxy-beta-D-glucopyranose, Uncharacterized protein DKFZp686C11235
著者Gohain, N, Tolbert, W.D, Pazgier, M.
登録日2018-02-22
公開日2019-02-27
最終更新日2023-10-04
実験手法X-RAY DIFFRACTION (2.4 Å)
主引用文献Antigen-Induced Allosteric Changes in a Human IgG1 Fc Increase Low-Affinity Fc gamma Receptor Binding.
Structure, 2020
6CHJ
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Wax ester synthase/diacylglycerol acyltransferase from Marinobacter aquaeolei VT8
分子名称: CHLORIDE ION, Diacylglycerol O-acyltransferase
著者Petronikolou, N, Satish, S.K.
登録日2018-02-22
公開日2018-06-13
最終更新日2024-04-03
実験手法X-RAY DIFFRACTION (2.428 Å)
主引用文献Structural and Biochemical Studies of a Biocatalyst for the Enzymatic Production of Wax Esters.
Acs Catalysis, 8, 2018
8W8R
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Cryo-EM structure of the AA-14-bound GPR101-Gs complex
分子名称: 1-(4-methylpyridin-2-yl)-3-[3-(trifluoromethyl)phenyl]thiourea, Guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2, Guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1, ...
著者Sun, J.P, Yu, X, Gao, N, Yang, F, Wang, J.Y, Yang, Z, Guan, Y, Wang, G.P.
登録日2023-09-04
公開日2024-01-03
最終更新日2024-04-10
実験手法ELECTRON MICROSCOPY (3.3 Å)
主引用文献Structure of GPR101-Gs enables identification of ligands with rejuvenating potential.
Nat.Chem.Biol., 20, 2024
6CS2
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BU of 6cs2 by Molmil
SARS Spike Glycoprotein - human ACE2 complex, Stabilized variant, all ACE2-bound particles
分子名称: 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, Angiotensin-converting enzyme 2, ...
著者Kirchdoerfer, R.N, Wang, N, Pallesen, J, Turner, H.L, Cottrell, C.A, McLellan, J.S, Ward, A.B.
登録日2018-03-19
公開日2018-04-11
最終更新日2024-10-16
実験手法ELECTRON MICROSCOPY (4.4 Å)
主引用文献Stabilized coronavirus spikes are resistant to conformational changes induced by receptor recognition or proteolysis.
Sci Rep, 8, 2018
8W8S
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BU of 8w8s by Molmil
Cryo-EM structure of the AA14-bound GPR101 complex
分子名称: 1-(4-methylpyridin-2-yl)-3-[3-(trifluoromethyl)phenyl]thiourea, Probable G-protein coupled receptor 101
著者Sun, J.P, Yu, X, Gao, N, Yang, F, Wang, J.Y, Yang, Z, Guan, Y, Wang, G.P.
登録日2023-09-04
公開日2024-01-03
最終更新日2024-10-16
実験手法ELECTRON MICROSCOPY (3.3 Å)
主引用文献Structure of GPR101-Gs enables identification of ligands with rejuvenating potential.
Nat.Chem.Biol., 20, 2024
2M09
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BU of 2m09 by Molmil
Structure, phosphorylation and U2AF65 binding of the Nterminal Domain of splicing factor 1 during 3 splice site Recognition
分子名称: Splicing factor 1
著者Madl, T, Sattler, M, Zhang, Y, Bagdiul, I, Kern, T, Kang, H, Zou, P, Maeusbacher, N, Sieber, S.A, Kraemer, A.
登録日2012-10-22
公開日2013-01-30
最終更新日2024-05-15
実験手法SOLUTION NMR
主引用文献Structure, phosphorylation and U2AF65 binding of the N-terminal domain of splicing factor 1 during 3'-splice site recognition.
Nucleic Acids Res., 41, 2013
8W9T
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Structure of TaHKT2;1 in NaCl at 2.6 Angstroms resolution
分子名称: HKT2, SODIUM ION
著者Wang, J, Su, N, Guo, J.
登録日2023-09-05
公開日2024-02-14
最終更新日2024-08-07
実験手法ELECTRON MICROSCOPY (2.6 Å)
主引用文献Structures and ion transport mechanisms of plant high-affinity potassium transporters.
Mol Plant, 17, 2024
8W9V
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BU of 8w9v by Molmil
structure of TaHKT2;1 in KCl at 2.9 Angstroms resolution
分子名称: HKT2, POTASSIUM ION
著者Wang, J, Su, N, Guo, J.
登録日2023-09-05
公開日2024-02-14
最終更新日2024-08-07
実験手法ELECTRON MICROSCOPY (2.9 Å)
主引用文献Structures and ion transport mechanisms of plant high-affinity potassium transporters.
Mol Plant, 17, 2024
8VE0
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BU of 8ve0 by Molmil
Human transthyretin covalently modified with A2-derived stilbene in the compressed conformation
分子名称: 3-(dimethylamino)-5-[(E)-2-(4-hydroxy-3,5-dimethylphenyl)ethenyl]benzoic acid, Transthyretin
著者Basanta, B, Nugroho, K, Yan, N, Kline, G.M, Tsai, F.J, Wu, M, Kelly, J.W, Lander, G.C.
登録日2023-12-18
公開日2024-01-31
最終更新日2024-10-23
実験手法ELECTRON MICROSCOPY (3.1 Å)
主引用文献The conformational landscape of human transthyretin revealed by cryo-EM
To Be Published
8W9O
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structure of AtHKT1;1 in KCl at 2.8 Angstroms resolution
分子名称: POTASSIUM ION, Sodium transporter HKT1
著者Wang, J, Su, N, Guo, J.
登録日2023-09-05
公開日2024-02-14
最終更新日2024-08-07
実験手法ELECTRON MICROSCOPY (2.8 Å)
主引用文献Structures and ion transport mechanisms of plant high-affinity potassium transporters.
Mol Plant, 17, 2024
8W9N
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BU of 8w9n by Molmil
Structure of AtHKT1;1 in NaCl at 2.7 Angstroms resolution
分子名称: SODIUM ION, Sodium transporter HKT1
著者Wang, J, Su, N, Guo, J.
登録日2023-09-05
公開日2024-02-14
最終更新日2024-08-07
実験手法ELECTRON MICROSCOPY (2.7 Å)
主引用文献Structures and ion transport mechanisms of plant high-affinity potassium transporters.
Mol Plant, 17, 2024
6CHH
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BU of 6chh by Molmil
Structure of human NNMT in complex with bisubstrate inhibitor MS2756
分子名称: (2~{S})-5-[2-(3-aminocarbonylphenyl)ethyl-[[(2~{R},3~{S},4~{R},5~{R})-5-(6-aminopurin-9-yl)-3,4-bis(oxidanyl)oxolan-2-yl]methyl]amino]-2-azanyl-pentanoic acid, 1,2-ETHANEDIOL, Nicotinamide N-methyltransferase
著者Babault, N, Liu, J, Jin, J.
登録日2018-02-22
公開日2018-06-13
最終更新日2023-10-04
実験手法X-RAY DIFFRACTION (2.3 Å)
主引用文献Discovery of Bisubstrate Inhibitors of Nicotinamide N-Methyltransferase (NNMT).
J. Med. Chem., 61, 2018
8WDU
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BU of 8wdu by Molmil
Photosynthetic LH1-RC complex from the purple sulfur bacterium Allochromatium vinosum purified by sucrose density
分子名称: (1R)-2-{[{[(2S)-2,3-DIHYDROXYPROPYL]OXY}(HYDROXY)PHOSPHORYL]OXY}-1-[(PALMITOYLOXY)METHYL]ETHYL (11E)-OCTADEC-11-ENOATE, (2S)-3-hydroxypropane-1,2-diyl dihexadecanoate, Antenna complex alpha/beta subunit, ...
著者Tani, K, Kanno, R, Harada, A, Kobayashi, A, Minamino, A, Nakamura, N, Ji, X.-C, Purba, E.R, Hall, M, Yu, L.-J, Madigan, M.T, Mizoguchi, A, Iwasaki, K, Humbel, B.M, Kimura, Y, Wang-Otomo, Z.-Y.
登録日2023-09-16
公開日2024-02-21
最終更新日2024-05-08
実験手法ELECTRON MICROSCOPY (2.24 Å)
主引用文献High-resolution structure and biochemical properties of the LH1-RC photocomplex from the model purple sulfur bacterium, Allochromatium vinosum.
Commun Biol, 7, 2024
6CNI
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BU of 6cni by Molmil
Crystal structure of H105A PGAM5 dimer
分子名称: PHOSPHATE ION, SODIUM ION, Serine/threonine-protein phosphatase PGAM5, ...
著者Ruiz, K, Agnew, C, Jura, N.
登録日2018-03-08
公開日2019-02-13
最終更新日2023-10-04
実験手法X-RAY DIFFRACTION (1.7 Å)
主引用文献Functional role of PGAM5 multimeric assemblies and their polymerization into filaments.
Nat Commun, 10, 2019
6SHN
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BU of 6shn by Molmil
Escherichia coli AGPase in complex with FBP. Symmetry C1
分子名称: 1,6-di-O-phosphono-beta-D-fructofuranose, Glucose-1-phosphate adenylyltransferase
著者Cifuente, J.O, Comino, N, D'Angelo, C, Marina, A, Gil-Carton, D, Albesa-Jove, D, Guerin, M.E.
登録日2019-08-07
公開日2020-02-05
最終更新日2024-05-22
実験手法ELECTRON MICROSCOPY (3.3 Å)
主引用文献The allosteric control mechanism of bacterial glycogen biosynthesis disclosed by cryoEM.
Curr Res Struct Biol, 2, 2020
6SIC
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BU of 6sic by Molmil
Cryo-EM structure of the Type III-B Cmr-beta bound to cognate target RNA
分子名称: CRISPR-associated RAMP protein, Cmr1 family, Cmr4 family, ...
著者Sofos, N, Montoya, G, Stella, S.
登録日2019-08-09
公開日2020-07-08
最終更新日2024-10-23
実験手法ELECTRON MICROSCOPY (3.52 Å)
主引用文献Structures of the Cmr-beta Complex Reveal the Regulation of the Immunity Mechanism of Type III-B CRISPR-Cas.
Mol.Cell, 79, 2020
8VLX
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HTT in complex with HAP40 and a small molecule.
分子名称: 40-kDa huntingtin-associated protein, Huntingtin, N-[(1S,2R)-2-benzylcyclopentyl]-N'-{1-[(1S)-1-(pyridin-4-yl)ethyl]piperidin-4-yl}urea
著者Poweleit, N, Boudet, J, Doherty, E.
登録日2024-01-12
公開日2024-03-06
最終更新日2024-10-16
実験手法ELECTRON MICROSCOPY (2.6 Å)
主引用文献Discovery of a Small Molecule Ligand to the Huntingtin/HAP40 complex
To Be Published
6SJU
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BU of 6sju by Molmil
Human kallikrein 7 with aromatic coumarinic ester compound 3 covalently bound to H57
分子名称: (3-iodanylphenyl) 6-methyl-2-oxidanylidene-chromene-3-carboxylate, 4-(2-HYDROXYETHYL)-1-PIPERAZINE ETHANESULFONIC ACID, Kallikrein-7, ...
著者Hanke, S, Straeter, N.
登録日2019-08-13
公開日2020-05-20
最終更新日2024-01-24
実験手法X-RAY DIFFRACTION (1.97 Å)
主引用文献Structural Studies on the Inhibitory Binding Mode of Aromatic Coumarinic Esters to Human Kallikrein-Related Peptidase 7.
J.Med.Chem., 63, 2020
6CS1
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SARS Spike Glycoprotein, Trypsin-cleaved, Stabilized variant, two S1 CTDs in an upwards conformation
分子名称: 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, Spike glycoprotein,Fibritin, ...
著者Kirchdoerfer, R.N, Wang, N, Pallesen, J, Turner, H.L, Cottrell, C.A, McLellan, J.S, Ward, A.B.
登録日2018-03-19
公開日2018-04-11
最終更新日2024-10-30
実験手法ELECTRON MICROSCOPY (4.6 Å)
主引用文献Stabilized coronavirus spikes are resistant to conformational changes induced by receptor recognition or proteolysis.
Sci Rep, 8, 2018

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