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3EW0
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The novel 2Fe-2S outer mitochondrial protein mitoNEET displays conformational flexibility in its N-terminal cytoplasmic tethering domain
Descriptor: CDGSH iron sulfur domain-containing protein 1, FE2/S2 (INORGANIC) CLUSTER
Authors:Conlan, A.R, Paddock, M.L, Wiley, S, Axelrod, H.L, Cohen, A.E, Abresch, E.C, Roy, M, Nechushtai, R, Jennings, P.A.
Deposit date:2008-10-13
Release date:2009-07-07
Last modified:2023-09-06
Method:X-RAY DIFFRACTION (1.4 Å)
Cite:The novel 2Fe-2S outer mitochondrial protein mitoNEET displays conformational flexibility in its N-terminal cytoplasmic tethering domain.
Acta Crystallogr.,Sect.F, 65, 2009
3EVV
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Crystal Structure of Calcium bound dimeric GCAMP2 (#2)
Descriptor: CALCIUM ION, Myosin light chain kinase, Green fluorescent protein, ...
Authors:Wang, Q, Shui, B, Kotlikoff, M.I, Sondermann, H.
Deposit date:2008-10-13
Release date:2008-12-09
Last modified:2023-12-27
Method:X-RAY DIFFRACTION (2.6 Å)
Cite:Structural Basis for Calcium Sensing by GCaMP2.
Structure, 16, 2008
3EVU
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Crystal structure of Calcium bound dimeric GCAMP2
Descriptor: CALCIUM ION, Myosin light chain kinase, Green fluorescent protein, ...
Authors:Wang, Q, Shui, B, Kotlikoff, M.I, Sondermann, H.
Deposit date:2008-10-13
Release date:2008-12-09
Last modified:2023-12-27
Method:X-RAY DIFFRACTION (1.75 Å)
Cite:Structural Basis for Calcium Sensing by GCaMP2.
Structure, 16, 2008
3EVR
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BU of 3evr by Molmil
Crystal structure of Calcium bound monomeric GCAMP2
Descriptor: CALCIUM ION, Myosin light chain kinase, Green fluorescent protein, ...
Authors:Wang, Q, Shui, B, Kotlikoff, M.I, Sondermann, H.
Deposit date:2008-10-13
Release date:2008-12-09
Last modified:2023-12-27
Method:X-RAY DIFFRACTION (2 Å)
Cite:Structural Basis for Calcium Sensing by GCaMP2.
Structure, 16, 2008
3EVP
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BU of 3evp by Molmil
crystal structure of circular-permutated EGFP
Descriptor: Green fluorescent protein,Green fluorescent protein
Authors:Wang, Q, Shui, B, Kotlikoff, M.I, Sondermann, H.
Deposit date:2008-10-13
Release date:2008-12-09
Last modified:2023-12-27
Method:X-RAY DIFFRACTION (1.453 Å)
Cite:Structural Basis for Calcium Sensing by GCaMP2.
Structure, 16, 2008
3EOZ
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BU of 3eoz by Molmil
Crystal Structure of Phosphoglycerate Mutase from Plasmodium Falciparum, PFD0660w
Descriptor: GLYCEROL, PHOSPHATE ION, putative Phosphoglycerate mutase
Authors:Wernimont, A.K, Tempel, W, Lam, A, Zhao, Y, Lew, J, Lin, Y.H, Wasney, G, Vedadi, M, Kozieradzki, I, Cossar, D, Schapira, M, Weigelt, J, Arrowsmith, C.H, Bochkarev, A, Edwards, A.M, Hui, R, Pizarro, J, Hills, T, Structural Genomics Consortium (SGC)
Deposit date:2008-09-29
Release date:2008-11-25
Last modified:2017-10-25
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:Characterization of a new phosphatase from Plasmodium.
Mol.Biochem.Parasitol., 179, 2011
3EKJ
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BU of 3ekj by Molmil
Calcium-free GCaMP2 (calcium binding deficient mutant)
Descriptor: Myosin light chain kinase, Green fluorescent protein, Calmodulin chimera
Authors:Akerboom, J, Velez Rivera, J.D, Looger, L.L, Schreiter, E.R.
Deposit date:2008-09-19
Release date:2008-12-16
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (2.8 Å)
Cite:Crystal Structures of the GCaMP Calcium Sensor Reveal the Mechanism of Fluorescence Signal Change and Aid Rational Design
J.Biol.Chem., 284, 2009
3EKH
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BU of 3ekh by Molmil
Calcium-saturated GCaMP2 T116V/K378W mutant monomer
Descriptor: CALCIUM ION, GLYCEROL, Myosin light chain kinase, ...
Authors:Akerboom, J, Velez Rivera, J.D, Looger, L.L, Schreiter, E.R.
Deposit date:2008-09-19
Release date:2008-12-16
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (2 Å)
Cite:Crystal Structures of the GCaMP Calcium Sensor Reveal the Mechanism of Fluorescence Signal Change and Aid Rational Design
J.Biol.Chem., 284, 2009
3EK8
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BU of 3ek8 by Molmil
Calcium-saturated GCaMP2 T116V/G87R mutant monomer
Descriptor: CALCIUM ION, Myosin light chain kinase, Green fluorescent protein, ...
Authors:Akerboom, J, Velez Rivera, J.D, Looger, L.L, Schreiter, E.R.
Deposit date:2008-09-19
Release date:2008-12-16
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (2.8 Å)
Cite:Crystal Structures of the GCaMP Calcium Sensor Reveal the Mechanism of Fluorescence Signal Change and Aid Rational Design
J.Biol.Chem., 284, 2009
3EK7
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BU of 3ek7 by Molmil
Calcium-saturated GCaMP2 dimer
Descriptor: CALCIUM ION, Myosin light chain kinase, Green fluorescent protein, ...
Authors:Akerboom, J, Velez Rivera, J.D, Looger, L.L, Schreiter, E.R.
Deposit date:2008-09-18
Release date:2008-12-16
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.85 Å)
Cite:Crystal Structures of the GCaMP Calcium Sensor Reveal the Mechanism of Fluorescence Signal Change and Aid Rational Design
J.Biol.Chem., 284, 2009
3EK4
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Calcium-saturated GCaMP2 Monomer
Descriptor: CALCIUM ION, Myosin light chain kinase, Green fluorescent protein, ...
Authors:Akerboom, J, Velez Rivera, J.D, Looger, L.L, Schreiter, E.R.
Deposit date:2008-09-18
Release date:2008-12-16
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (2.65 Å)
Cite:Crystal Structures of the GCaMP Calcium Sensor Reveal the Mechanism of Fluorescence Signal Change and Aid Rational Design
J.Biol.Chem., 284, 2009
3EEO
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M. HhaI co-crystallized with synthetic dsDNA containing a propane diol in place of the deoxycytidine residue targeted for methylation.
Descriptor: 5'-D(P*DCP*DCP*DAP*DTP*DGP*DCP*DGP*DCP*DTP*DGP*DAP*DC)-3', 5'-D(P*DGP*DTP*DCP*DAP*DGP*(PDI)P*DGP*DCP*DAP*DTP*DGP*DG)-3', Modification methylase HhaI, ...
Authors:Porta, J.C, Christman, J.K, Borgstahl, G.E.O.
Deposit date:2008-09-05
Release date:2010-03-02
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (1.94 Å)
Cite:M. HhaI co-crystallized with synthetic dsDNA containing a propane diol in place of the deoxycytidine residue targeted for methylation.
To be Published
3E5W
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BU of 3e5w by Molmil
Crystal Structure Analysis of FP611
Descriptor: Red fluorescent protein eqFP611
Authors:Nienhaus, K, Nar, H, Heilker, R, Wiedenmann, J, Nienhaus, G.U.
Deposit date:2008-08-14
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.71 Å)
Cite:Trans-cis isomerization is responsible for the red-shifted fluorescence in variants of the red fluorescent protein eqFP611.
J.Am.Chem.Soc., 130, 2008
3E5V
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Crystal Structure Analysis of eqFP611 Double Mutant T122R, N143S
Descriptor: Red fluorescent protein eqFP611
Authors:Nar, H, Nienhaus, K, Nienhaus, U, Wiedenmann, J.
Deposit date:2008-08-14
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Trans-cis isomerization is responsible for the red-shifted fluorescence in variants of the red fluorescent protein eqFP611.
J.Am.Chem.Soc., 130, 2008
3E5T
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BU of 3e5t by Molmil
Crystal Structure Analysis of FP611
Descriptor: Red fluorescent protein eqFP611
Authors:Nar, H, Nienhaus, K, Nienhaus, U, Wiedenmann, J.
Deposit date:2008-08-14
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.1 Å)
Cite:Trans-cis isomerization is responsible for the red-shifted fluorescence in variants of the red fluorescent protein eqFP611.
J.Am.Chem.Soc., 130, 2008
3DQU
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BU of 3dqu by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 2000 Atmospheres Number 1: Structure 20 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.42 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQO
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BU of 3dqo by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 1 Atmosphere Number 2: Structure 2 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.5 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQN
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BU of 3dqn by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 500 Atmospheres: Structure 3 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.44 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQM
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BU of 3dqm by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 750 Atmospheres: Structure 4 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.44 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQL
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BU of 3dql by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 1: Structure 5 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.47 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQK
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BU of 3dqk by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 2: Structure 6 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.4 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQJ
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BU of 3dqj by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 3: Structure 7 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.51 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQI
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BU of 3dqi by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 4: Structure 8 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.42 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQH
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Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 5: Structure 9 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.45 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008
3DQF
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BU of 3dqf by Molmil
Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 6: Structure 10 in a Series of 26 High Pressure Structures
Descriptor: Green fluorescent protein
Authors:Barstow, B, Kim, C.U.
Deposit date:2008-07-09
Release date:2008-09-23
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (1.46 Å)
Cite:Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift.
Proc.Natl.Acad.Sci.Usa, 105, 2008

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数据于2024-07-17公开中

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