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8PSM
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BU of 8psm by Molmil
Asymmetric unit of the yeast fatty acid synthase in the non-rotated state with ACP at the malonyl/palmitoyl transferase domain (FASx sample)
分子名称: 4'-PHOSPHOPANTETHEINE, FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, ...
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-13
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (3.1 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PS1
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BU of 8ps1 by Molmil
Asymmetric unit of the yeast fatty acid synthase in the non-rotated state with ACP at the ketosynthase domain (FASamn sample)
分子名称: COENZYME A, FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, ...
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-13
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (2.8 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PRV
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BU of 8prv by Molmil
Asymmetric unit of the yeast fatty acid synthase in the non-rotated state with ACP at the ketosreductase domain (FASamn sample)
分子名称: COENZYME A, FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, ...
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-12
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (2.9 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PS8
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BU of 8ps8 by Molmil
Asymmetric unit of the yeast fatty acid synthase in the semi non-rotated state with ACP at the enoyl reductase domain (FASam sample)
分子名称: Fatty acid synthase subunit alpha, Fatty acid synthase subunit beta
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-26
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (4 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PSL
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BU of 8psl by Molmil
Asymmetric unit of the yeast fatty acid synthase in the semi non-rotated state with ACP at the ketosynthase domain (FASx sample)
分子名称: FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, Fatty acid synthase subunit beta
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-13
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (3.7 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PSF
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BU of 8psf by Molmil
Asymmetric unit of the yeast fatty acid synthase in non-rotated state with ACP at the acetyl transferase domain (FASx sample)
分子名称: 4'-PHOSPHOPANTETHEINE, FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, ...
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-13
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (2.8 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PS2
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BU of 8ps2 by Molmil
Asymmetric unit of the yeast fatty acid synthase with ACP at the enoyl reductase domain (FASam sample)
分子名称: FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, Fatty acid synthase subunit beta, ...
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-13
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (2.9 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
8PSK
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BU of 8psk by Molmil
Asymmetric unit of the yeast fatty acid synthase in the non-rotated state with ACP at the ketosynthase domain (FASx sample)
分子名称: FLAVIN MONONUCLEOTIDE, Fatty acid synthase subunit alpha, Fatty acid synthase subunit beta
著者Singh, K, Bunzel, G, Graf, B, Yip, K.M, Stark, H, Chari, A.
登録日2023-07-13
公開日2023-11-22
実験手法ELECTRON MICROSCOPY (2.8 Å)
主引用文献Reconstruction of a fatty acid synthesis cycle from acyl carrier protein and cofactor structural snapshots.
Cell, 186, 2023
5AFI
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BU of 5afi by Molmil
2.9A Structure of E. coli ribosome-EF-TU complex by cs-corrected cryo-EM
分子名称: 16S ribosomal RNA, 23S ribosomal RNA, 30S ribosomal protein S10, ...
著者Fischer, N, Neumann, P, Konevega, A.L, Bock, L.V, Ficner, R, Rodnina, M.V, Stark, H.
登録日2015-01-22
公開日2015-03-11
最終更新日2024-04-24
実験手法ELECTRON MICROSCOPY (2.9 Å)
主引用文献Structure of the E. coli ribosome-EF-Tu complex at <3 angstrom resolution by Cs-corrected cryo-EM.
Nature, 520, 2015
5KHU
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BU of 5khu by Molmil
Model of human Anaphase-promoting complex/Cyclosome (APC15 deletion mutant), in complex with the Mitotic checkpoint complex (APC/C-CDC20-MCC) based on cryo EM data at 4.8 Angstrom resolution
分子名称: Anaphase-promoting complex subunit 1, Anaphase-promoting complex subunit 10, Anaphase-promoting complex subunit 11, ...
著者Yamaguchi, M, VanderLinden, R, Dube, P, Stark, H, Schulman, B.
登録日2016-06-15
公開日2016-09-07
最終更新日2024-03-06
実験手法ELECTRON MICROSCOPY (4.8 Å)
主引用文献Cryo-EM of Mitotic Checkpoint Complex-Bound APC/C Reveals Reciprocal and Conformational Regulation of Ubiquitin Ligation.
Mol.Cell, 63, 2016
5KHR
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BU of 5khr by Molmil
Model of human Anaphase-promoting complex/Cyclosome complex (APC15 deletion mutant) in complex with the E2 UBE2C/UBCH10 poised for ubiquitin ligation to substrate (APC/C-CDC20-substrate-UBE2C)
分子名称: Anaphase-promoting complex subunit 1, Anaphase-promoting complex subunit 10, Anaphase-promoting complex subunit 11, ...
著者VanderLinden, R, Yamaguchi, M, Dube, P, Haselbach, D, Stark, H, Schulman, B.A.
登録日2016-06-15
公開日2016-08-24
最終更新日2024-03-06
実験手法ELECTRON MICROSCOPY (6.1 Å)
主引用文献Cryo-EM of Mitotic Checkpoint Complex-Bound APC/C Reveals Reciprocal and Conformational Regulation of Ubiquitin Ligation.
Mol.Cell, 63, 2016
5L9U
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BU of 5l9u by Molmil
Model of human Anaphase-promoting complex/Cyclosome (APC/C-CDH1) with a cross linked Ubiquitin variant-substrate-UBE2C (UBCH10) complex representing key features of multiubiquitination
分子名称: Anaphase-promoting complex subunit 1, Anaphase-promoting complex subunit 10, Anaphase-promoting complex subunit 11, ...
著者Brown, N.G, VanderLinden, R, Dube, P, Haselbach, D, Peters, J.M, Stark, H, Schulman, B.A.
登録日2016-06-11
公開日2016-09-14
最終更新日2024-05-08
実験手法ELECTRON MICROSCOPY (6.4 Å)
主引用文献Dual RING E3 Architectures Regulate Multiubiquitination and Ubiquitin Chain Elongation by APC/C.
Cell, 165, 2016
5L9T
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BU of 5l9t by Molmil
Model of human Anaphase-promoting complex/Cyclosome (APC/C-CDH1) with E2 UBE2S poised for polyubiquitination where UBE2S, APC2, and APC11 are modeled into low resolution density
分子名称: Anaphase-promoting complex subunit 1, Anaphase-promoting complex subunit 10, Anaphase-promoting complex subunit 11, ...
著者Brown, N.G, VanderLinden, R, Dube, P, Haselbach, D, Peters, J.M, Stark, H, Schulman, B.A.
登録日2016-06-11
公開日2016-10-26
最終更新日2024-05-08
実験手法ELECTRON MICROSCOPY (6.4 Å)
主引用文献Dual RING E3 Architectures Regulate Multiubiquitination and Ubiquitin Chain Elongation by APC/C.
Cell, 165, 2016
5LF4
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BU of 5lf4 by Molmil
Human 20S proteasome complex with Delanzomib at 2.0 Angstrom
分子名称: CHLORIDE ION, MAGNESIUM ION, PENTAETHYLENE GLYCOL, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (1.99 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LF6
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BU of 5lf6 by Molmil
Human 20S proteasome complex with Z-LLY-ketoaldehyde at 2.1 Angstrom
分子名称: CHLORIDE ION, LLY-ketoaldehyde peptide, MAGNESIUM ION, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2.07 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LEY
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BU of 5ley by Molmil
Human 20S proteasome complex with Oprozomib at 1.9 Angstrom
分子名称: CHLORIDE ION, MAGNESIUM ION, PENTAETHYLENE GLYCOL, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (1.9 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LF7
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BU of 5lf7 by Molmil
Human 20S proteasome complex with Ixazomib at 2.0 Angstrom
分子名称: CHLORIDE ION, MAGNESIUM ION, PENTAETHYLENE GLYCOL, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LF0
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BU of 5lf0 by Molmil
Human 20S proteasome complex with Epoxomicin at 2.4 Angstrom
分子名称: CHLORIDE ION, EPOXOMICIN (peptide inhibitor), MAGNESIUM ION, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-03-06
実験手法X-RAY DIFFRACTION (2.41 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LEX
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BU of 5lex by Molmil
Native human 20S proteasome in Mg-Acetate at 2.2 Angstrom
分子名称: MAGNESIUM ION, PENTAETHYLENE GLYCOL, POTASSIUM ION, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2.2 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LE5
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BU of 5le5 by Molmil
Native human 20S proteasome at 1.8 Angstrom
分子名称: CHLORIDE ION, MAGNESIUM ION, PENTAETHYLENE GLYCOL, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-29
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (1.8 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LF3
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BU of 5lf3 by Molmil
Human 20S proteasome complex with Bortezomib at 2.1 Angstrom
分子名称: CHLORIDE ION, MAGNESIUM ION, N-[(1R)-1-(DIHYDROXYBORYL)-3-METHYLBUTYL]-N-(PYRAZIN-2-YLCARBONYL)-L-PHENYLALANINAMIDE, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2.1 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5LF1
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BU of 5lf1 by Molmil
Human 20S proteasome complex with Dihydroeponemycin at 2.0 Angstrom
分子名称: CHLORIDE ION, MAGNESIUM ION, PENTAETHYLENE GLYCOL, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
5M32
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BU of 5m32 by Molmil
Human 26S proteasome in complex with Oprozomib
分子名称: 26S protease regulatory subunit 10B, 26S protease regulatory subunit 4, 26S protease regulatory subunit 6A, ...
著者Haselbach, D, Schrader, J, Lambrecht, F, Henneberg, F, Chari, A, Stark, H.
登録日2016-10-14
公開日2017-07-05
最終更新日2019-12-11
実験手法ELECTRON MICROSCOPY (3.8 Å)
主引用文献Long-range allosteric regulation of the human 26S proteasome by 20S proteasome-targeting cancer drugs.
Nat Commun, 8, 2017
5LEZ
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BU of 5lez by Molmil
Human 20S proteasome complex with Oprozomib in Mg-Acetate at 2.2 Angstrom
分子名称: ACETATE ION, MAGNESIUM ION, PENTAETHYLENE GLYCOL, ...
著者Schrader, J, Henneberg, F, Mata, R, Tittmann, K, Schneider, T.R, Stark, H, Bourenkov, G, Chari, A.
登録日2016-06-30
公開日2016-08-17
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2.19 Å)
主引用文献The inhibition mechanism of human 20S proteasomes enables next-generation inhibitor design.
Science, 353, 2016
2MT5
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BU of 2mt5 by Molmil
Isolated Ring domain
分子名称: Anaphase-promoting complex subunit 11, ZINC ION
著者Brown, N.G, Watson, E.R, Weissman, F, Royappa, G, Schulman, B, Jarvis, M, Vanderlinden, R, Frye, J.J, Qiao, R, Petzold, G, Peters, J, Stark, H.
登録日2014-08-13
公開日2014-10-29
最終更新日2024-05-15
実験手法SOLUTION NMR
主引用文献Mechanism of Polyubiquitination by Human Anaphase-Promoting Complex: RING Repurposing for Ubiquitin Chain Assembly.
Mol.Cell, 56, 2014

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