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PDB: 73 results

8EAQ
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BU of 8eaq by Molmil
Structure of the full-length IP3R1 channel determined at high Ca2+
Descriptor: (9R,11S)-9-({[(1S)-1-HYDROXYHEXADECYL]OXY}METHYL)-2,2-DIMETHYL-5,7,10-TRIOXA-2LAMBDA~5~-AZA-6LAMBDA~5~-PHOSPHAOCTACOSANE-6,6,11-TRIOL, CALCIUM ION, Inositol 1,4,5-trisphosphate receptor type 1, ...
Authors:Fan, G, Baker, M.R, Terry, L.E, Arige, V, Chen, M, Seryshev, A.B, Baker, M.L, Ludtke, S.J, Yule, D.I, Serysheva, I.I.
Deposit date:2022-08-29
Release date:2022-11-23
Last modified:2024-10-09
Method:ELECTRON MICROSCOPY (3.26 Å)
Cite:Conformational motions and ligand-binding underlying gating and regulation in IP 3 R channel.
Nat Commun, 13, 2022
8EAR
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BU of 8ear by Molmil
Structure of the full-length IP3R1 channel determined in the presence of Calcium/IP3/ATP
Descriptor: (9R,11S)-9-({[(1S)-1-HYDROXYHEXADECYL]OXY}METHYL)-2,2-DIMETHYL-5,7,10-TRIOXA-2LAMBDA~5~-AZA-6LAMBDA~5~-PHOSPHAOCTACOSANE-6,6,11-TRIOL, ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, ...
Authors:Fan, G, Baker, M.R, Terry, L.E, Arige, V, Chen, M, Seryshev, A.B, Baker, M.L, Ludtke, S.J, Yule, D.I, Serysheva, I.I.
Deposit date:2022-08-29
Release date:2022-11-23
Last modified:2024-10-23
Method:ELECTRON MICROSCOPY (3.5 Å)
Cite:Conformational motions and ligand-binding underlying gating and regulation in IP 3 R channel.
Nat Commun, 13, 2022
3JAV
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BU of 3jav by Molmil
Structure of full-length IP3R1 channel in the apo-state determined by single particle cryo-EM
Descriptor: Inositol 1,4,5-trisphosphate receptor type 1
Authors:Fan, G, Baker, M.L, Wang, Z, Baker, M.R, Sinyagovskiy, P.A, Chiu, W, Ludtke, S.J, Serysheva, I.I.
Deposit date:2015-06-30
Release date:2015-10-07
Last modified:2024-02-21
Method:ELECTRON MICROSCOPY (4.7 Å)
Cite:Gating machinery of InsP3R channels revealed by electron cryomicroscopy.
Nature, 527, 2015
7OZ4
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BU of 7oz4 by Molmil
Mature capsid of bacteriophage phiRSA1
Descriptor: p2 family phage major capsid protein
Authors:Effantin, G, Fujiwara, A, Kawsaki, T, Yamada, T, Schoehn, G.
Deposit date:2021-06-25
Release date:2021-11-17
Last modified:2024-07-17
Method:ELECTRON MICROSCOPY (3.9 Å)
Cite:High Resolution Structure of the Mature Capsid of Ralstonia solanacearum Bacteriophage phi RSA1 by Cryo-Electron Microscopy.
Int J Mol Sci, 22, 2021
7OAE
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BU of 7oae by Molmil
Cryo-EM structure of the plectasin fibril (double strands)
Descriptor: Fungal defensin plectasin
Authors:Effantin, G.
Deposit date:2021-04-19
Release date:2022-04-27
Last modified:2022-11-16
Method:ELECTRON MICROSCOPY (2 Å)
Cite:pH- and concentration-dependent supramolecular assembly of a fungal defensin plectasin variant into helical non-amyloid fibrils.
Nat Commun, 13, 2022
7OAG
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BU of 7oag by Molmil
Cryo-EM structure of the plectasin fibril (single strand)
Descriptor: Fungal defensin plectasin
Authors:Effantin, G.
Deposit date:2021-04-19
Release date:2022-04-27
Last modified:2024-10-16
Method:ELECTRON MICROSCOPY (3.4 Å)
Cite:pH- and concentration-dependent supramolecular assembly of a fungal defensin plectasin variant into helical non-amyloid fibrils.
Nat Commun, 13, 2022
6QNT
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BU of 6qnt by Molmil
Human Adenovirus type 3 fiber knob in complex with one copy of Desmoglein-2
Descriptor: Desmoglein-2, Fiber protein
Authors:Effantin, G.
Deposit date:2019-02-12
Release date:2019-03-27
Last modified:2024-05-15
Method:ELECTRON MICROSCOPY (3.5 Å)
Cite:CryoEM structure of adenovirus type 3 fibre with desmoglein 2 shows an unusual mode of receptor engagement.
Nat Commun, 10, 2019
6QNU
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BU of 6qnu by Molmil
Human Adenovirus type 3 fiber knob in complex with two copies of Desmoglein-2
Descriptor: Desmoglein-2, Fiber protein
Authors:Effantin, G.
Deposit date:2019-02-12
Release date:2019-03-27
Last modified:2024-05-15
Method:ELECTRON MICROSCOPY (3.8 Å)
Cite:CryoEM structure of adenovirus type 3 fibre with desmoglein 2 shows an unusual mode of receptor engagement.
Nat Commun, 10, 2019
7AGF
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BU of 7agf by Molmil
HAd7 knob in complex with 3 EC2-EC3 modules of DSG-2
Descriptor: Desmoglein-2, Fiber
Authors:Effantin, G, Vassal-Stermann, E, Fender, P.
Deposit date:2020-09-22
Release date:2020-10-14
Last modified:2024-05-01
Method:ELECTRON MICROSCOPY (3.1 Å)
Cite:Binding Mechanism Elucidation of the Acute Respiratory Disease Causing Agent Adenovirus of Serotype 7 to Desmoglein-2.
Viruses, 12, 2020
7AGG
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BU of 7agg by Molmil
HAd7 knob in complex with 2 EC2-EC3 modules of DSG-2
Descriptor: Desmoglein-2, Fiber
Authors:Effantin, G, Vassal-Stermann, E, Fender, P.
Deposit date:2020-09-22
Release date:2020-10-14
Last modified:2024-05-01
Method:ELECTRON MICROSCOPY (3.3 Å)
Cite:Binding Mechanism Elucidation of the Acute Respiratory Disease Causing Agent Adenovirus of Serotype 7 to Desmoglein-2.
Viruses, 12, 2020
7K7G
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BU of 7k7g by Molmil
nucleosome and Gal4 complex
Descriptor: Centromere DNA-binding protein complex CBF3 subunit B, DNA (147-MER), Histone H2A.1, ...
Authors:Ruifang, G, Yawen, B.
Deposit date:2020-09-22
Release date:2021-03-31
Method:ELECTRON MICROSCOPY (4.2 Å)
Cite:Structural and dynamic mechanisms of CBF3-guided centromeric nucleosome formation.
Nat Commun, 12, 2021
7K78
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BU of 7k78 by Molmil
antibody and nucleosome complex
Descriptor: Cse4, DNA (136-MER), Histone H2A.1, ...
Authors:Ruifang, G, Yawen, B.
Deposit date:2020-09-22
Release date:2021-03-31
Method:ELECTRON MICROSCOPY (3.1 Å)
Cite:Structural and dynamic mechanisms of CBF3-guided centromeric nucleosome formation.
Nat Commun, 12, 2021
8QJX
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BU of 8qjx by Molmil
Human Adenovirus type 11 fiber knob in complex with two copies of its cell receptor, Desmoglein-2
Descriptor: Desmoglein-2, Fiber protein
Authors:Effantin, G.
Deposit date:2023-09-14
Release date:2023-11-01
Last modified:2023-12-13
Method:ELECTRON MICROSCOPY (3.3 Å)
Cite:Toward the understanding of DSG2 and CD46 interaction with HAdV-11 fiber, a super-complex analysis.
J.Virol., 97, 2023
8QK3
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BU of 8qk3 by Molmil
Human Adenovirus type 11 fiber knob in complex with its cell receptors, Desmoglein-2 and CD46
Descriptor: Desmoglein-2, Fiber protein, Membrane cofactor protein
Authors:Effantin, G.
Deposit date:2023-09-14
Release date:2023-11-01
Last modified:2023-12-13
Method:ELECTRON MICROSCOPY (3.2 Å)
Cite:Toward the understanding of DSG2 and CD46 interaction with HAdV-11 fiber, a super-complex analysis.
J.Virol., 97, 2023
8QJY
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BU of 8qjy by Molmil
Human Adenovirus type 11 fiber knob in complex with two copies of its cell receptor, Desmoglein-2
Descriptor: Desmoglein-2, Fiber protein
Authors:Effantin, G.
Deposit date:2023-09-14
Release date:2023-11-01
Last modified:2023-12-13
Method:ELECTRON MICROSCOPY (3.5 Å)
Cite:Toward the understanding of DSG2 and CD46 interaction with HAdV-11 fiber, a super-complex analysis.
J.Virol., 97, 2023
7K79
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BU of 7k79 by Molmil
CBF3
Descriptor: Centromere DNA-binding protein complex CBF3 subunit B, Centromere DNA-binding protein complex CBF3 subunit C, Suppressor of kinetochore protein 1
Authors:Ruifang, G, Yawen, B.
Deposit date:2020-09-22
Release date:2021-03-31
Last modified:2024-10-30
Method:ELECTRON MICROSCOPY (4 Å)
Cite:Structural and dynamic mechanisms of CBF3-guided centromeric nucleosome formation.
Nat Commun, 12, 2021
5NG5
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BU of 5ng5 by Molmil
multi-drug efflux; membrane transport; RND superfamily; Drug resistance
Descriptor: 6-[2-(3,4-dimethoxyphenyl)ethylsulfanyl]-8-[4-(2-methoxyethyl)piperazin-1-yl]-3,3-dimethyl-1,4-dihydropyrano[3,4-c]pyridine-5-carbonitrile, Multidrug efflux pump accessory protein AcrZ, Multidrug efflux pump subunit AcrA, ...
Authors:Wang, Z, Fan, G, Hryc, C.F, Blaza, J.N, Serysheva, I.I, Schmid, M.F, Chiu, W, Luisi, B.F, Du, D.
Deposit date:2017-03-16
Release date:2017-04-19
Last modified:2017-08-02
Method:ELECTRON MICROSCOPY (6.5 Å)
Cite:An allosteric transport mechanism for the AcrAB-TolC Multidrug Efflux Pump.
Elife, 6, 2017
6MU1
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BU of 6mu1 by Molmil
Structure of full-length IP3R1 channel bound with Adenophostin A
Descriptor: Adenophostin A, Inositol 1,4,5-trisphosphate receptor type 1
Authors:Serysheva, I.I, Fan, G, Baker, M.R, Wang, Z, Seryshev, A, Ludtke, S.J, Baker, M.L.
Deposit date:2018-10-22
Release date:2018-12-05
Last modified:2019-11-27
Method:ELECTRON MICROSCOPY (4.1 Å)
Cite:Cryo-EM reveals ligand induced allostery underlying InsP3R channel gating.
Cell Res., 28, 2018
6MU2
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BU of 6mu2 by Molmil
Structure of full-length IP3R1 channel in the Apo-state
Descriptor: Inositol 1,4,5-trisphosphate receptor type 1
Authors:Serysheva, I.I, Fan, G, Baker, M.R, Wang, Z, Seryshev, A, Ludtke, S.J, Baker, M.L.
Deposit date:2018-10-22
Release date:2018-12-05
Last modified:2024-10-30
Method:ELECTRON MICROSCOPY (3.9 Å)
Cite:Cryo-EM reveals ligand induced allostery underlying InsP3R channel gating.
Cell Res., 28, 2018
7LHE
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BU of 7lhe by Molmil
Structure of full-length IP3R1 channel reconstituted into lipid nanodisc in the apo-state
Descriptor: (9R,11S)-9-({[(1S)-1-HYDROXYHEXADECYL]OXY}METHYL)-2,2-DIMETHYL-5,7,10-TRIOXA-2LAMBDA~5~-AZA-6LAMBDA~5~-PHOSPHAOCTACOSANE-6,6,11-TRIOL, Inositol 1,4,5-trisphosphate receptor type 1, ZINC ION
Authors:Baker, M.R, Fan, G, Baker, M.L, Serysheva, I.I.
Deposit date:2021-01-22
Release date:2021-06-02
Last modified:2024-03-06
Method:ELECTRON MICROSCOPY (3.3 Å)
Cite:Cryo-EM structure of type 1 IP3R channel in a lipid bilayer
Commun Biol, 4, 2021
7LHF
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BU of 7lhf by Molmil
Structure of full-length IP3R1 channel solubilized in LNMG & lipid in the apo-state
Descriptor: (9R,11S)-9-({[(1S)-1-HYDROXYHEXADECYL]OXY}METHYL)-2,2-DIMETHYL-5,7,10-TRIOXA-2LAMBDA~5~-AZA-6LAMBDA~5~-PHOSPHAOCTACOSANE-6,6,11-TRIOL, Inositol 1,4,5-trisphosphate receptor type 1, ZINC ION
Authors:Baker, M.R, Fan, G, Baker, M.L, Serysheva, I.I.
Deposit date:2021-01-22
Release date:2021-06-02
Last modified:2024-03-06
Method:ELECTRON MICROSCOPY (2.96 Å)
Cite:Cryo-EM structure of type 1 IP3R channel in a lipid bilayer
Commun Biol, 4, 2021
5V5S
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BU of 5v5s by Molmil
multi-drug efflux; membrane transport; RND superfamily; Drug resistance
Descriptor: Multidrug efflux pump subunit AcrA, Multidrug efflux pump subunit AcrB, Outer membrane protein TolC
Authors:wang, Z, fan, G, Hryc, C.F, Blaza, J.N, Serysheva, I.I, Schmid, M.F, Chiu, W, Luisi, B.F, Du, D.
Deposit date:2017-03-15
Release date:2017-04-19
Last modified:2019-10-23
Method:ELECTRON MICROSCOPY (6.5 Å)
Cite:An allosteric transport mechanism for the AcrAB-TolC Multidrug Efflux Pump.
Elife, 6, 2017
2Q9M
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BU of 2q9m by Molmil
4-Substituted Trinems as Broad Spectrum-Lactamase Inhibitors: Structure-based Design, Synthesis and Biological Activity
Descriptor: (1R,4S,7AS)-1-(1-FORMYLPROP-1-EN-1-YL)-4-METHOXY-2,4,5,6,7,7A-HEXAHYDRO-1H-ISOINDOLE-3-CARBOXYLIC ACID, Beta-lactamase
Authors:Plantan, I, Selic, L, Mesar, T, Stefanic Anderluh, P, Oblak, M, Prezelj, A, Hesse, L, Andrejasic, M, Vilar, M, Turk, D, Kocijan, A, Prevec, T, Vilfan, G, Kocjan, D, Copar, A, Urleb, U, Solmajer, T.
Deposit date:2007-06-13
Release date:2007-08-21
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (2.05 Å)
Cite:4-Substituted Trinems as Broad Spectrum beta-Lactamase Inhibitors: Structure-Based Design, Synthesis, and Biological Activity
J.Med.Chem., 50, 2007
2Q9N
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BU of 2q9n by Molmil
4-Substituted Trinems as Broad Spectrum-Lactamase Inhibitors: Structure-based Design, Synthesis and Biological Activity
Descriptor: (1S,4R,7AR)-4-BUTOXY-1-[(1R)-1-FORMYLPROPYL]-2,4,5,6,7,7A-HEXAHYDRO-1H-ISOINDOLE-3-CARBOXYLIC ACID, Beta-lactamase
Authors:Plantan, I, Selic, L, Mesar, T, Stefanic Anderluh, P, Oblak, M, Prezelj, A, Hesse, L, Andrejasic, M, Vilar, M, Turk, D, Kocijan, A, Prevec, T, Vilfan, G, Kocjan, D, Copar, A, Urleb, U, Solmajer, T.
Deposit date:2007-06-13
Release date:2007-08-21
Last modified:2024-10-09
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:4-Substituted Trinems as Broad Spectrum beta-Lactamase Inhibitors: Structure-Based Design, Synthesis, and Biological Activity
J.Med.Chem., 50, 2007
7QG9
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BU of 7qg9 by Molmil
Tail tip of siphophage T5 : common core proteins
Descriptor: Distal tail protein, L-shaped tail fiber protein p132, Minor tail protein, ...
Authors:Linares, R, Arnaud, C.A, Effantin, G, Darnault, C, Epalle, N, Boeri Erba, E, Schoehn, G, Breyton, C.
Deposit date:2021-12-07
Release date:2022-12-21
Last modified:2024-07-17
Method:ELECTRON MICROSCOPY (3.45 Å)
Cite:Structural basis of bacteriophage T5 infection trigger and E. coli cell wall perforation.
Sci Adv, 9, 2023

 

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