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6DMZ
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BU of 6dmz by Molmil
Solution structure of ZmD32
分子名称: Flower-specific gamma-thionin
著者Harvey, P.J, Craik, D.J.
登録日2018-06-05
公開日2019-05-15
最終更新日2023-06-14
実験手法SOLUTION NMR
主引用文献Salt-Tolerant Antifungal and Antibacterial Activities of the Corn Defensin ZmD32.
Front Microbiol, 10, 2019
3IEG
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BU of 3ieg by Molmil
Crystal Structure of P58(IPK) TPR Domain at 2.5 A
分子名称: DnaJ homolog subfamily C member 3
著者Tao, J, Sha, B.
登録日2009-07-22
公開日2010-03-31
最終更新日2019-07-24
実験手法X-RAY DIFFRACTION (2.51 Å)
主引用文献Crystal Structure of P58(IPK) TPR Fragment Reveals the Mechanism for its Molecular Chaperone Activity in UPR.
J.Mol.Biol., 64, 2010
7QL7
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BU of 7ql7 by Molmil
Crystal structure of YTHDF1 YTH domain in complex with the ebsulfur derivative compound 9
分子名称: 1,2-ETHANEDIOL, THIOCYANATE ION, YTH domain-containing family protein 1, ...
著者Dalle Vedove, A, Cazzanelli, G, Quattrone, A, Provenzani, A, Lolli, G.
登録日2021-12-19
公開日2022-11-23
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (2.3 Å)
主引用文献Small-Molecule Ebselen Binds to YTHDF Proteins Interfering with the Recognition of N 6 -Methyladenosine-Modified RNAs.
Acs Pharmacol Transl Sci, 5, 2022
1QQL
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BU of 1qql by Molmil
THE CRYSTAL STRUCTURE OF FIBROBLAST GROWTH FACTOR 7/1 CHIMERA
分子名称: FIBROBLAST GROWTH FACTOR 7/1 CHIMERA
著者Ye, S, Luo, Y, Pelletier, H, McKeehan, W.L.
登録日1999-06-07
公開日2000-01-14
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (2.3 Å)
主引用文献Structural basis for interaction of FGF-1, FGF-2, and FGF-7 with different heparan sulfate motifs.
Biochemistry, 40, 2001
1QQK
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BU of 1qqk by Molmil
THE CRYSTAL STRUCTURE OF FIBROBLAST GROWTH FACTOR 7 (KERATINOCYTE GROWTH FACTOR)
分子名称: FIBROBLAST GROWTH FACTOR 7
著者Ye, S, Luo, Y, Pelletier, H, McKeehan, W.L.
登録日1999-06-07
公開日2000-01-14
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (3.1 Å)
主引用文献Structural basis for interaction of FGF-1, FGF-2, and FGF-7 with different heparan sulfate motifs.
Biochemistry, 40, 2001
7ME0
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BU of 7me0 by Molmil
Cryo-EM structure of SARS-CoV-2 NSP15 NendoU at pH 6.0
分子名称: Uridylate-specific endoribonuclease
著者Godoy, A.S, Song, Y, Nakamura, A.M, Noske, G.D, Gawriljuk, V.O, Fernandes, R.S, Oliva, G.
登録日2021-04-06
公開日2021-04-14
最終更新日2024-05-29
実験手法ELECTRON MICROSCOPY (2.48 Å)
主引用文献Allosteric regulation and crystallographic fragment screening of SARS-CoV-2 NSP15 endoribonuclease.
Nucleic Acids Res., 2023
3LJ1
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BU of 3lj1 by Molmil
IRE1 complexed with Cdk1/2 Inhibitor III
分子名称: 5-AMINO-3-{[4-(AMINOSULFONYL)PHENYL]AMINO}-N-(2,6-DIFLUOROPHENYL)-1H-1,2,4-TRIAZOLE-1-CARBOTHIOAMIDE, Serine/threonine-protein kinase/endoribonuclease IRE1
著者Lee, K.P.K, Sicheri, F.
登録日2010-01-25
公開日2010-05-12
最終更新日2023-09-06
実験手法X-RAY DIFFRACTION (3.33 Å)
主引用文献Flavonol activation defines an unanticipated ligand-binding site in the kinase-RNase domain of IRE1.
Mol.Cell, 38, 2010
7RB0
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BU of 7rb0 by Molmil
Cryo-EM structure of SARS-CoV-2 NSP15 NendoU at pH 7.5
分子名称: Uridylate-specific endoribonuclease
著者Godoy, A.S, Song, Y, Nakamura, A.M, Noske, G.D, Gawriljuk, V.O, Fernandes, R.S, Oliva, G.
登録日2021-07-05
公開日2021-07-14
最終更新日2024-06-05
実験手法ELECTRON MICROSCOPY (2.98 Å)
主引用文献Allosteric regulation and crystallographic fragment screening of SARS-CoV-2 NSP15 endoribonuclease.
Nucleic Acids Res., 51, 2023
7RB2
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BU of 7rb2 by Molmil
Cryo-EM structure of SARS-CoV-2 NSP15 NendoU in BIS-Tris pH 6.0
分子名称: Uridylate-specific endoribonuclease
著者Godoy, A.S, Song, Y, Nakamura, A.M, Noske, G.D, Gawriljuk, V.O, Fernandes, R.S, Oliva, G.
登録日2021-07-05
公開日2021-07-14
最終更新日2024-06-05
実験手法ELECTRON MICROSCOPY (3.27 Å)
主引用文献Allosteric regulation and crystallographic fragment screening of SARS-CoV-2 NSP15 endoribonuclease.
Nucleic Acids Res., 51, 2023
3LJ0
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BU of 3lj0 by Molmil
IRE1 complexed with ADP and Quercetin
分子名称: 3,5,7,3',4'-PENTAHYDROXYFLAVONE, ADENOSINE-5'-DIPHOSPHATE, MAGNESIUM ION, ...
著者Lee, K.P.K, Sicheri, F.
登録日2010-01-25
公開日2010-05-12
最終更新日2023-09-06
実験手法X-RAY DIFFRACTION (3.2 Å)
主引用文献Flavonol activation defines an unanticipated ligand-binding site in the kinase-RNase domain of IRE1.
Mol.Cell, 38, 2010
3QD2
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BU of 3qd2 by Molmil
Crystal structure of mouse PERK kinase domain
分子名称: Eukaryotic translation initiation factor 2-alpha kinase 3
著者Wenjun, C, Jingzhi, L, David, R, Bingdong, S.
登録日2011-01-17
公開日2011-04-27
最終更新日2019-01-16
実験手法X-RAY DIFFRACTION (2.81 Å)
主引用文献The structure of the PERK kinase domain suggests the mechanism for its activation.
Acta Crystallogr.,Sect.D, 67, 2011
3LJ2
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BU of 3lj2 by Molmil
IRE1 complexed with JAK Inhibitor I
分子名称: 2-TERT-BUTYL-9-FLUORO-3,6-DIHYDRO-7H-BENZ[H]-IMIDAZ[4,5-F]ISOQUINOLINE-7-ONE, Serine/threonine-protein kinase/endoribonuclease IRE1
著者Lee, K.P.K, Sicheri, F.
登録日2010-01-25
公開日2010-05-12
最終更新日2023-09-06
実験手法X-RAY DIFFRACTION (3.33 Å)
主引用文献Flavonol activation defines an unanticipated ligand-binding site in the kinase-RNase domain of IRE1.
Mol.Cell, 38, 2010
8GLB
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BU of 8glb by Molmil
Selenomethionine Derivatized Citrate Synthase (CitA) in Mycobacterium tuberculosis with Pyruvate
分子名称: 1,2-ETHANEDIOL, PYRUVIC ACID, citrate synthase
著者Pathirage, R, Ronning, D, Favrot, L.
登録日2023-03-21
公開日2023-06-07
最終更新日2023-11-15
実験手法X-RAY DIFFRACTION (2.1 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GMI
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BU of 8gmi by Molmil
Citrate Synthase (CitA) in Mycobacterium tuberculosis modified by Ebselen at C143 residue
分子名称: CITRATE ANION, N-phenyl-2-selanylbenzamide, citrate synthase
著者Pathirage, R, Ronning, D.
登録日2023-03-25
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (2.7 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GI7
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BU of 8gi7 by Molmil
C143A variant of Citrate Synthase (CitA) in Mycobacterium tuberculosis
分子名称: 1,2-ETHANEDIOL, CITRATE ANION, citrate synthase (unknown stereospecificity)
著者Pathirage, R, Ronning, D.
登録日2023-03-13
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (3.3 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GM9
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BU of 8gm9 by Molmil
Structure of Citrate Synthase(CitA) in Mycobacterium Tuberculosis
分子名称: 1,2-ETHANEDIOL, ACRYLIC ACID, DI(HYDROXYETHYL)ETHER, ...
著者Pathirage, R, Ronning, D, Favrot, L.
登録日2023-03-24
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (2.4 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GLL
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BU of 8gll by Molmil
R149E variant of Citrate Synthase (CitA) in Mycobacterium tuberculosis
分子名称: 1,2-ETHANEDIOL, DI(HYDROXYETHYL)ETHER, SULFATE ION, ...
著者Pathirage, R, Ronning, D, Petit, C.
登録日2023-03-22
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (2.65 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GMK
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BU of 8gmk by Molmil
Pyruvate bound structure of Citrate Synthase (CitA) in Mycobacterium Tuberculosis
分子名称: 1,2-ETHANEDIOL, DI(HYDROXYETHYL)ETHER, PYRUVIC ACID, ...
著者Pathirage, R, Ronning, D, Yamsek, M.
登録日2023-03-26
公開日2023-06-07
最終更新日2023-11-15
実験手法X-RAY DIFFRACTION (1.81 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GMF
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BU of 8gmf by Molmil
R153M variant of Citrate Synthase (CitA) in Mycobacterium tuberculosis
分子名称: citrate synthase
著者Pathirage, R, Ronning, D.
登録日2023-03-25
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (2.96 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
8GIW
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BU of 8giw by Molmil
C143K variant of Citrate Synthase (CitA) in Mycobacterium tuberculosis
分子名称: 1,2-ETHANEDIOL, CITRATE ANION, DI(HYDROXYETHYL)ETHER, ...
著者Pathirage, R, Ronning, D.
登録日2023-03-14
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (3.15 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023
7D45
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BU of 7d45 by Molmil
eIF2B-eIF2(aP), aP1 complex
分子名称: Eukaryotic translation initiation factor 2 subunit 1, Translation initiation factor eIF-2B subunit alpha, Translation initiation factor eIF-2B subunit beta, ...
著者Kashiwagi, K, Ito, T.
登録日2020-09-22
公開日2020-12-09
最終更新日2021-01-27
実験手法ELECTRON MICROSCOPY (3.8 Å)
主引用文献ISRIB Blunts the Integrated Stress Response by Allosterically Antagonising the Inhibitory Effect of Phosphorylated eIF2 on eIF2B.
Mol.Cell, 81, 2021
7D44
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BU of 7d44 by Molmil
eIF2B-eIF2(aP), aP2 complex
分子名称: Eukaryotic translation initiation factor 2 subunit 1, Translation initiation factor eIF-2B subunit alpha, Translation initiation factor eIF-2B subunit beta, ...
著者Kashiwagi, K, Ito, T.
登録日2020-09-22
公開日2020-12-09
最終更新日2021-01-27
実験手法ELECTRON MICROSCOPY (4 Å)
主引用文献ISRIB Blunts the Integrated Stress Response by Allosterically Antagonising the Inhibitory Effect of Phosphorylated eIF2 on eIF2B.
Mol.Cell, 81, 2021
7D46
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BU of 7d46 by Molmil
eIF2B apo
分子名称: Translation initiation factor eIF-2B subunit alpha, Translation initiation factor eIF-2B subunit beta, Translation initiation factor eIF-2B subunit delta, ...
著者Kashiwagi, K, Ito, T.
登録日2020-09-22
公開日2020-12-09
最終更新日2024-03-27
実験手法ELECTRON MICROSCOPY (4 Å)
主引用文献ISRIB Blunts the Integrated Stress Response by Allosterically Antagonising the Inhibitory Effect of Phosphorylated eIF2 on eIF2B.
Mol.Cell, 81, 2021
7D43
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BU of 7d43 by Molmil
eIF2B-eIF2(aP), aPg complex
分子名称: Eukaryotic translation initiation factor 2 subunit 1, Eukaryotic translation initiation factor 2 subunit 2, Eukaryotic translation initiation factor 2 subunit 3, ...
著者Kashiwagi, K, Ito, T.
登録日2020-09-22
公開日2020-12-09
最終更新日2021-01-27
実験手法ELECTRON MICROSCOPY (4.3 Å)
主引用文献ISRIB Blunts the Integrated Stress Response by Allosterically Antagonising the Inhibitory Effect of Phosphorylated eIF2 on eIF2B.
Mol.Cell, 81, 2021
8S9D
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BU of 8s9d by Molmil
C143S variant of Citrate Synthase (CitA) in Mycobacterium tuberculosis
分子名称: 1,2-ETHANEDIOL, CITRATE ANION, citrate synthase
著者Pathirage, R, Ronning, D.
登録日2023-03-27
公開日2023-06-07
最終更新日2023-11-08
実験手法X-RAY DIFFRACTION (2.57 Å)
主引用文献Mycobacterium tuberculosis CitA activity is modulated by cysteine oxidation and pyruvate binding.
Rsc Med Chem, 14, 2023

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