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5CRX
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BU of 5crx by Molmil
ASYMMETRIC DNA-BENDING IN THE CRE-LOXP SITE-SPECIFIC RECOMBINATION SYNAPSE
分子名称: DNA (35-MER), PROTEIN (BACTERIOPHAGE P1 CRE GENE)
著者Guo, F, Gopaul, D.N, Van Duyne, G.D.
登録日1999-04-21
公開日1999-07-07
最終更新日2023-09-20
実験手法X-RAY DIFFRACTION (2.7 Å)
主引用文献Asymmetric DNA bending in the Cre-loxP site-specific recombination synapse.
Proc.Natl.Acad.Sci.USA, 96, 1999
1K6K
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BU of 1k6k by Molmil
Crystal Structure of ClpA, an AAA+ Chaperone-like Regulator of ClpAP protease implication to the functional difference of two ATPase domains
分子名称: ATP-DEPENDENT CLP PROTEASE ATP-BINDING SUBUNIT CLPA
著者Guo, F, Maurizi, M.R, Esser, L, Xia, D.
登録日2001-10-16
公開日2002-09-27
最終更新日2024-04-03
実験手法X-RAY DIFFRACTION (1.8 Å)
主引用文献Crystal structure of ClpA, an HSP100 chaperone and regulator of ClpAP protease
J.Biol.Chem., 277, 2002
1KSF
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Crystal Structure of ClpA, an HSP100 chaperone and regulator of ClpAP protease: Structural basis of differences in Function of the Two AAA+ ATPase domains
分子名称: ADENOSINE-5'-DIPHOSPHATE, ATP-DEPENDENT CLP PROTEASE ATP-BINDING SUBUNIT CLPA, ISOPROPYL ALCOHOL, ...
著者Guo, F, Maurizi, M.R, Esser, L, Xia, D.
登録日2002-01-12
公開日2002-09-27
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (2.6 Å)
主引用文献Crystal structure of ClpA, an HSP100 chaperone and regulator of ClpAP protease
J.Biol.Chem., 277, 2002
1MBU
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BU of 1mbu by Molmil
Crystal Structure Analysis of ClpSN heterodimer
分子名称: ATP-Dependent clp Protease ATP-Binding Subunit clp A, BIS-(2-HYDROXYETHYL)AMINO-TRIS(HYDROXYMETHYL)METHANE YTTRIUM, CHLORIDE ION, ...
著者Guo, F, Esser, L, Singh, S.K, Maurizi, M.R, Xia, D.
登録日2002-08-03
公開日2002-12-11
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (2.3 Å)
主引用文献Crystal Structure of the Heterodimeric Complex of the Adaptor, ClpS, with the N-domain of the AAA+ Chaperone, ClpA
J.Biol.Chem., 277, 2002
1MBV
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BU of 1mbv by Molmil
CRYSTAL STRUCTURE ANALYSIS OF ClpSN HETERODIMER TETRAGONAL FORM
分子名称: ATP-Dependent clp Protease ATP-Binding Subunit clp A, Protein yljA
著者Guo, F, Esser, L, Singh, S.K, Maurizi, M.R, Xia, D.
登録日2002-08-03
公開日2002-12-11
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (3.3 Å)
主引用文献Crystal Structure of the Heterodimeric Complex of the Adaptor, ClpS, with the N-domain of AAA+ Chaperone ClpA
J.Biol.Chem., 277, 2002
1MBX
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CRYSTAL STRUCTURE ANALYSIS OF ClpSN WITH TRANSITION METAL ION BOUND
分子名称: ATP-Dependent clp Protease ATP-Binding Subunit clp A, BIS-(2-HYDROXYETHYL)AMINO-TRIS(HYDROXYMETHYL)METHANE YTTRIUM, CHLORIDE ION, ...
著者Guo, F, Esser, L, Singh, S.K, Maurizi, M.R, Xia, D.
登録日2002-08-03
公開日2002-12-11
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (2.25 Å)
主引用文献Crystal Structure of the Heterodimeric Complex of the Adaptor, ClpS, with the N-domain of the AAA+ Chaperone, ClpA
J.Biol.Chem., 277, 2002
1CRX
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BU of 1crx by Molmil
CRE RECOMBINASE/DNA COMPLEX REACTION INTERMEDIATE I
分子名称: CRE RECOMBINASE, DNA (5'-D(*AP*TP*AP*TP*GP*CP*TP*AP*TP*AP*CP*GP*AP*AP*GP*TP*TP*AP*T)-3'), DNA (5'-D(*TP*AP*TP*AP*AP*CP*TP*TP*CP*GP*TP*AP*TP*AP*G)-3'), ...
著者Guo, F, Gopaul, D.N, Van Duyne, G.D.
登録日1997-07-02
公開日1998-10-14
最終更新日2011-07-13
実験手法X-RAY DIFFRACTION (2.4 Å)
主引用文献Structure of Cre recombinase complexed with DNA in a site-specific recombination synapse.
Nature, 389, 1997
4CRX
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ASYMMETRIC DNA-BENDING IN THE CRE-LOXP SITE-SPECIFIC RECOMBINATION SYNAPSE
分子名称: DNA (35 NUCLEOTIDE CRE RECOGNITION SITE), PROTEIN (CRE RECOMBINASE)
著者Guo, F, Gopaul, D.N, Van Duyne, G.D.
登録日1999-04-20
公開日1999-06-14
最終更新日2023-09-13
実験手法X-RAY DIFFRACTION (2.2 Å)
主引用文献Asymmetric DNA bending in the Cre-loxP site-specific recombination synapse.
Proc.Natl.Acad.Sci.USA, 96, 1999
2O97
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BU of 2o97 by Molmil
Crystal Structure of E. coli HU heterodimer
分子名称: CHLORIDE ION, DNA-binding protein HU-alpha, DNA-binding protein HU-beta, ...
著者Guo, F, Adhya, S.
登録日2006-12-13
公開日2007-03-06
最終更新日2023-12-27
実験手法X-RAY DIFFRACTION (2.45 Å)
主引用文献Spiral structure of Escherichia coli HU{alpha}beta provides foundation for DNA supercoiling.
Proc.Natl.Acad.Sci.Usa, 104, 2007
4QMG
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BU of 4qmg by Molmil
The Structure of MTDH-SND1 Complex Reveals Novel Cancer-Promoting Interactions
分子名称: CESIUM ION, GLYCEROL, Protein LYRIC, ...
著者Guo, F, Stanevich, V, Wan, L, Satyshur, K, Kang, Y, Xing, Y.
登録日2014-06-16
公開日2014-10-08
実験手法X-RAY DIFFRACTION (2.701 Å)
主引用文献Structural Insights into the Tumor-Promoting Function of the MTDH-SND1 Complex.
Cell Rep, 8, 2014
3F05
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BU of 3f05 by Molmil
Crystal Structure of Synaptotagmin I C2A domain with Mn(II)
分子名称: MANGANESE (II) ION, SULFATE ION, Synaptotagmin-1
著者Guo, F, Dakshinamurthy, R, Thallapuranam, S.K.K, Sakon, J.
登録日2008-10-24
公開日2009-10-06
最終更新日2023-12-27
実験手法X-RAY DIFFRACTION (1.4 Å)
主引用文献Cystal structure of synaptotagmin I C2A
to be published
3F04
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BU of 3f04 by Molmil
Crystal Structure of Synaptotagmin I C2A domain
分子名称: SULFATE ION, Synaptotagmin-1
著者Guo, F, Dakshinamurthy, R, Thallapuranam, S.K.K, Sakon, J.
登録日2008-10-24
公開日2009-09-08
最終更新日2023-12-27
実験手法X-RAY DIFFRACTION (1.35 Å)
主引用文献Cystal structure of synaptotagmin I C2A
to be published
3F00
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BU of 3f00 by Molmil
Crystal Structure of Synaptotagmin I C2A domain with Cu(II)
分子名称: COPPER (II) ION, SULFATE ION, Synaptotagmin-1
著者Guo, F, Dakshinamurthy, R, Thallapuranam, S.K.K, Sakon, J.
登録日2008-10-24
公開日2009-09-08
最終更新日2023-09-06
実験手法X-RAY DIFFRACTION (1.36 Å)
主引用文献Crystal structure of Synaptotagmin I C2A
To be Published
3F01
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BU of 3f01 by Molmil
Crystal Structure of Synaptotagmin I C2A domain with Cu(II)
分子名称: COPPER (II) ION, SULFATE ION, Synaptotagmin-1
著者Guo, F, Dakshinamurthy, R, Thallapuranam, S.K.K, Sakon, J.
登録日2008-10-24
公開日2009-10-06
最終更新日2023-09-06
実験手法X-RAY DIFFRACTION (1.7 Å)
主引用文献Crystal structure of synaptotagmin I C2A
To be Published
3CU1
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BU of 3cu1 by Molmil
Crystal Structure of 2:2:2 FGFR2D2:FGF1:SOS complex
分子名称: 1,3,4,6-tetra-O-sulfo-beta-D-fructofuranose-(2-1)-2,3,4,6-tetra-O-sulfonato-alpha-D-glucopyranose, Fibroblast growth factor receptor 2, Heparin-binding growth factor 1
著者Guo, F, Dakshinamurthy, R, Thallapuranam, S.K.K, Sakon, J.
登録日2008-04-15
公開日2009-04-21
最終更新日2020-07-29
実験手法X-RAY DIFFRACTION (2.6 Å)
主引用文献Crystal structure of 2:2:2 FGFR2D2:FGF1:SOS complex
To be Published
1X8W
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BU of 1x8w by Molmil
Structure of the Tetrahymena Ribozyme: Base Triple Sandwich and Metal Ion at the Active Site
分子名称: MAGNESIUM ION, Tetrahymena ribozyme RNA
著者Guo, F, Gooding, A.R, Cech, T.R.
登録日2004-08-18
公開日2004-11-09
最終更新日2024-02-14
実験手法X-RAY DIFFRACTION (3.8 Å)
主引用文献Structure of the Tetrahymena ribozyme: base triple sandwich and metal ion at the active site.
Mol.Cell, 16, 2004
3J7W
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BU of 3j7w by Molmil
Capsid Expansion Mechanism Of Bacteriophage T7 Revealed By Multi-State Atomic Models Derived From Cryo-EM Reconstructions
分子名称: Major capsid protein 10A
著者Guo, F, Liu, Z, Fang, P.A, Zhang, Q, Wright, E.T, Wu, W, Zhang, C, Vago, F, Ren, Y, Jakata, J, Chiu, W, Serwer, P, Jiang, W.
登録日2014-08-12
公開日2014-10-15
最終更新日2024-02-21
実験手法ELECTRON MICROSCOPY (3.5 Å)
主引用文献Capsid expansion mechanism of bacteriophage T7 revealed by multistate atomic models derived from cryo-EM reconstructions.
Proc.Natl.Acad.Sci.USA, 111, 2014
3J7X
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BU of 3j7x by Molmil
Capsid Expansion Mechanism Of Bacteriophage T7 Revealed By Multi-State Atomic Models Derived From Cryo-EM Reconstructions
分子名称: Major capsid protein 10A
著者Guo, F, Liu, Z, Fang, P.A, Zhang, Q, Wright, E.T, Wu, W, Zhang, C, Vago, F, Ren, Y, Jakata, J, Chiu, W, Serwer, P, Jiang, W.
登録日2014-08-12
公開日2014-10-15
最終更新日2024-02-21
実験手法ELECTRON MICROSCOPY (3.6 Å)
主引用文献Capsid expansion mechanism of bacteriophage T7 revealed by multistate atomic models derived from cryo-EM reconstructions.
Proc.Natl.Acad.Sci.USA, 111, 2014
3J7V
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BU of 3j7v by Molmil
Capsid Expansion Mechanism Of Bacteriophage T7 Revealed By Multi-State Atomic Models Derived From Cryo-EM Reconstructions
分子名称: Major capsid protein 10A
著者Guo, F, Liu, Z, Fang, P.A, Zhang, Q, Wright, E.T, Wu, W, Zhang, C, Vago, F, Ren, Y, Jakata, J, Chiu, W, Serwer, P, Jiang, W.
登録日2014-08-12
公開日2014-10-15
最終更新日2024-02-21
実験手法ELECTRON MICROSCOPY (4.6 Å)
主引用文献Capsid expansion mechanism of bacteriophage T7 revealed by multistate atomic models derived from cryo-EM reconstructions.
Proc.Natl.Acad.Sci.USA, 111, 2014
6LNL
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BU of 6lnl by Molmil
ASFV core shell protein p15
分子名称: 60 kDa polyprotein
著者Guo, F, Shi, Y, Peng, G.
登録日2019-12-30
公開日2020-12-30
最終更新日2023-11-22
実験手法X-RAY DIFFRACTION (1.9286 Å)
主引用文献The structural basis of African swine fever virus core shell protein p15 binding to DNA.
Faseb J., 35, 2021
3CAF
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BU of 3caf by Molmil
Crystal Structure of hFGFR2 D2 Domain
分子名称: Fibroblast growth factor receptor 2
著者Guo, F, Dakshinamurthy, R, Kathir, K.M, Thallapuranam, S.K.K, Sakon, J.
登録日2008-02-19
公開日2009-01-27
最終更新日2011-07-13
実験手法X-RAY DIFFRACTION (1.96 Å)
主引用文献Crystal structure analysis of the hFGFR2 D2 domain
To be Published
4LAC
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BU of 4lac by Molmil
Crystal Structure of Protein Phosphatase 2A (PP2A) and PP2A phosphatase activator (PTPA) complex with ATPgammaS
分子名称: 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, DI(HYDROXYETHYL)ETHER, MANGANESE (II) ION, ...
著者Guo, F, Stanevich, V, Wlodarchak, N, Satyshur, K.A, Xing, Y.
登録日2013-06-19
公開日2013-10-09
最終更新日2023-09-20
実験手法X-RAY DIFFRACTION (2.82 Å)
主引用文献Structural basis of PP2A activation by PTPA, an ATP-dependent activation chaperone.
Cell Res., 24, 2014
4E5R
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BU of 4e5r by Molmil
Crystal Structure of Frog DGCR8 Dimerization Domain
分子名称: MGC78846 protein
著者Guo, F, Senturia, R, Laganowsky, A, Barr, I, Scheidemantle, B.D.
登録日2012-03-14
公開日2013-02-27
最終更新日2024-02-28
実験手法X-RAY DIFFRACTION (1.9 Å)
主引用文献Dimerization and heme binding are conserved in amphibian and starfish homologues of the microRNA processing protein DGCR8.
Plos One, 7, 2012
3EUU
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BU of 3euu by Molmil
Crystal structure of the FGFR2 D2 domain
分子名称: Fibroblast growth factor receptor 2
著者Sakon, J, Guo, F, Dakshinamurthy, R, Kathir, K.M, Thallapuranam, S.K.K.
登録日2008-10-10
公開日2009-08-25
最終更新日2023-09-06
実験手法X-RAY DIFFRACTION (2.34 Å)
主引用文献Crystal structure of the D2 domain of hFGFR2
To be Published
7SQZ
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BU of 7sqz by Molmil
CSDaV wild-type
分子名称: Citrus Sudden Death-associated Virus Capsid Protein
著者Guo, F, Matsumura, E.E, Falk, B.W.
登録日2021-11-07
公開日2022-05-25
最終更新日2024-06-05
実験手法ELECTRON MICROSCOPY (3.1 Å)
主引用文献Citrus sudden death-associated virus as a new expression vector for rapid in planta production of heterologous proteins, chimeric virions, and virus-like particles.
Biotechnol Rep., 35, 2022

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