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8A6O
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BU of 8a6o by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore 600 fs after Photoexcitation
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-18
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A6P
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BU of 8a6p by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore 900 fs after photoexcitation
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-18
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A6R
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BU of 8a6r by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore 100 ps after Photoexcitation
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-18
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A6G
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BU of 8a6g by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore in the non-fluorescent OFF-state
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-17
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A83
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BU of 8a83 by Molmil
rsEGFP2 with a chlorinated chromophore in the fluorescent ON-state in a crystal dehydrated after illumination
Descriptor: Green fluorescent protein, SULFATE ION
Authors:Fadini, A, van Thor, J, Chang, J.
Deposit date:2022-06-21
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.81 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A6N
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BU of 8a6n by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore 300 fs after Photoexcitation
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-18
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A7V
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BU of 8a7v by Molmil
Room temperature rsEGFP2 in its OFF-state obtained with SFX
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-21
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.46 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A6Q
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BU of 8a6q by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore 5 ps after photoexcitation
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-18
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
8A6S
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BU of 8a6s by Molmil
Room temperature rsEGFP2 with a chlorinated chromophore 1 microsecond after Photoexcitation
Descriptor: Green fluorescent protein
Authors:Fadini, A, van Thor, J.
Deposit date:2022-06-19
Release date:2023-07-19
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.63 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 145, 2023
5OER
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BU of 5oer by Molmil
Hen egg-white lysozyme refined against 5000 9 keV diffraction patterns
Descriptor: 10-((2R)-2-HYDROXYPROPYL)-1,4,7,10-TETRAAZACYCLODODECANE 1,4,7-TRIACETIC ACID, GADOLINIUM ATOM, Lysozyme C, ...
Authors:Gorel, A, Schlichting, I.
Deposit date:2017-07-09
Release date:2017-10-25
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.9 Å)
Cite:Multi-wavelength anomalous diffraction de novo phasing using a two-colour X-ray free-electron laser with wide tunability.
Nat Commun, 8, 2017
8AM4
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BU of 8am4 by Molmil
Cl-rsEGFP2 Long Wavelength Structure
Descriptor: Green fluorescent protein
Authors:Orr, C.M, Fadini, A, van Thor, J.
Deposit date:2022-08-02
Release date:2023-08-02
Last modified:2024-01-31
Method:X-RAY DIFFRACTION (2.02 Å)
Cite:Serial Femtosecond Crystallography Reveals that Photoactivation in a Fluorescent Protein Proceeds via the Hula Twist Mechanism.
J.Am.Chem.Soc., 2023
5H36
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BU of 5h36 by Molmil
Crystal structures of the TRIC trimeric intracellular cation channel orthologue from Rhodobacter sphaeroides
Descriptor: 1,2-DIMYRISTOYL-SN-GLYCERO-3-PHOSPHOCHOLINE, Uncharacterized protein TRIC
Authors:Kasuya, G, Hiraizumi, M, Hattori, M, Nureki, O.
Deposit date:2016-10-20
Release date:2017-01-11
Last modified:2024-03-20
Method:X-RAY DIFFRACTION (3.409 Å)
Cite:Crystal structures of the TRIC trimeric intracellular cation channel orthologues
Cell Res., 26, 2016
5H35
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BU of 5h35 by Molmil
Crystal structures of the TRIC trimeric intracellular cation channel orthologue from Sulfolobus solfataricus
Descriptor: 1,2-DIMYRISTOYL-SN-GLYCERO-3-PHOSPHOCHOLINE, Fab Heavy Chain, Fab Light Chain, ...
Authors:Kasuya, G, Hiraizumi, M, Hattori, M, Nureki, O.
Deposit date:2016-10-20
Release date:2017-01-11
Last modified:2020-02-26
Method:X-RAY DIFFRACTION (2.642 Å)
Cite:Crystal structures of the TRIC trimeric intracellular cation channel orthologues
Cell Res., 26, 2016
7JRI
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BU of 7jri by Molmil
High-resolution Crystal Structures of Transient Intermediates in the Phytochrome Photocycle, 33 ms structure
Descriptor: 3-[2-[[5-[[(3E,4S)-3-ethylidene-4-methyl-5-oxidanylidene-pyrrol-2-yl]methyl]-3-(3-hydroxy-3-oxopropyl)-4-methyl-1H-pyrrol-2-yl]methyl]-5-[(4-ethyl-3-methyl-5-oxidanylidene-pyrrol-2-yl)methyl]-4-methyl-1H-pyrrol-3-yl]propanoic acid, BENZAMIDINE, Photoreceptor-histidine kinase BphP
Authors:Schmidt, M, Stojkovic, E.
Deposit date:2020-08-12
Release date:2021-04-07
Last modified:2023-10-18
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:High-resolution crystal structures of transient intermediates in the phytochrome photocycle.
Structure, 29, 2021
7JR5
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BU of 7jr5 by Molmil
Real Time Reaction Intermediates in Stigmatella Bacteriophytochrome P2
Descriptor: 3-[2-[[5-[(4-ethenyl-3-methyl-5-oxidanylidene-pyrrol-2-yl)methyl]-3-(3-hydroxy-3-oxopropyl)-4-methyl-1~{H}-pyrrol-2-yl]methyl]-5-[[(3~{S})-4-ethyl-3-methyl-2-oxidanylidene-1,3-dihydropyrrol-5-yl]methyl]-4-methyl-1~{H}-pyrrol-3-yl]propanoic acid, BENZAMIDINE, Photoreceptor-histidine kinase BphP
Authors:Schmidt, M.
Deposit date:2020-08-11
Release date:2021-10-06
Last modified:2023-10-18
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:High-resolution crystal structures of transient intermediates in the phytochrome photocycle.
Structure, 29, 2021
8J80
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BU of 8j80 by Molmil
Cryo-EM structure of hZnT7-Fab complex in zinc state 1, determined in heterogeneous conformations- one subunit in an inward-facing zinc-bound and the other in an outward-facing zinc-unbound conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, ZINC ION, ...
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (2.68 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
8J7V
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BU of 8j7v by Molmil
Cryo-EM structure of hZnT7-Fab complex in zinc-unbound state, determined in heterogeneous conformations- one subunit in an inward-facing and the other in an outward-facing conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, Zinc transporter 7
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (2.79 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
8J7U
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BU of 8j7u by Molmil
Cryo-EM structure of hZnT7-Fab complex in zinc-bound state, determined in outward-facing conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, ZINC ION, ...
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (3.12 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
8J7W
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BU of 8j7w by Molmil
Cryo-EM structure of hZnT7-Fab complex in zinc state 2, determined in heterogeneous conformations- one subunit in an inward-facing zinc-bound and the other in an outward-facing zinc-bound conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, ZINC ION, ...
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (2.92 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
8J7X
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BU of 8j7x by Molmil
Cryo-EM structure of hZnT7DeltaHis-loop-Fab complex in zinc-unbound state, determined in outward-facing conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, Zinc transporter 7
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (3.4 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
8J7Y
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BU of 8j7y by Molmil
Cryo-EM structure of hZnT7DeltaHis-loop-Fab complex in zinc-bound state, determined in outward-facing conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, ZINC ION, ...
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (3.4 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
8J7T
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BU of 8j7t by Molmil
Cryo-EM structure of hZnT7-Fab complex in zinc-unbound state, determined in outward-facing conformation
Descriptor: Heavy chain of YN7114-08 Fab, Light chain of YN7114-08 Fab, Zinc transporter 7
Authors:Han, B.B, Inaba, K, Watanabe, S.
Deposit date:2023-04-28
Release date:2023-09-20
Method:ELECTRON MICROSCOPY (2.2 Å)
Cite:Cryo-EM structures of human zinc transporter ZnT7 reveal the mechanism of Zn 2+ uptake into the Golgi apparatus.
Nat Commun, 14, 2023
1MQK
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BU of 1mqk by Molmil
Crystal structure of the unliganded Fv-fragment of the anti-cytochrome C oxidase antibody 7E2
Descriptor: antibody 7E2 FV fragment, heavy chain, light chain
Authors:Essen, L.-O, Harrenga, A, Ostermeier, C, Michel, H.
Deposit date:2002-09-16
Release date:2003-04-01
Last modified:2017-10-11
Method:X-RAY DIFFRACTION (1.28 Å)
Cite:1.3 A X-ray structure of an antibody Fv fragment used for induced membrane-protein crystallization.
Acta Crystallogr.,Sect.D, 59, 2003
5OFP
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BU of 5ofp by Molmil
Structure of the antibacterial peptide ABC transporter McjD in an apo inward occluded conformation
Descriptor: Microcin-J25 export ATP-binding/permease protein McjD
Authors:Beis, K, Choudhury, H.G.
Deposit date:2017-07-11
Release date:2017-09-06
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (4.71 Å)
Cite:Structural basis for antibacterial peptide self-immunity by the bacterial ABC transporter McjD.
EMBO J., 36, 2017
5OFR
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BU of 5ofr by Molmil
Structure of the antibacterial peptide ABC transporter McjD in a high energy outward occluded intermediate state
Descriptor: ADENOSINE-5'-DIPHOSPHATE, MAGNESIUM ION, Microcin-J25 export ATP-binding/permease protein McjD, ...
Authors:Beis, K, Bountra, K.
Deposit date:2017-07-11
Release date:2017-09-06
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (3.4 Å)
Cite:Structural basis for antibacterial peptide self-immunity by the bacterial ABC transporter McjD.
EMBO J., 36, 2017

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