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Showing 1 - 50 of 7,718 items for (author: du & g)

EMDB-66971:
In situ C2S2M2L4-type PSII-LHCII supercomplex, two loosely bound (L-) LHCII trimers at one side, protomer 1
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-66974:
In situ C2S2M2L4-type PSII-LHCII supercomplex, two loosely bound (L-) LHCII trimers at one side, protomer 2
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-81432:
In situ structure of side-by-side PSII-LHCII dimer (Consensus map)
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-81433:
In situ structure of side-by-side PSII-LHCII dimer (focused on PSII copy 1)
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-81434:
In situ structure of side-by-side PSII-LHCII dimer (focused on PSII copy 2)
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-81438:
In situ structure of the side-by-side PSII-LHCII dimer from Oryza sativa (composite)
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-81439:
In situ structure of the trans-lumenal PSII-LHCII dimer (Consensus map)
Method: single particle / : Zhu J, Li J, Elias E, Zhang K, Croce R

EMDB-81440:
In situ structure of the bis-trans-lumenal/trans-stromal PSII-LHCII tetramer (Consensus map)
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

PDB-27ur:
In situ structure of the side-by-side PSII-LHCII dimer from Oryza sativa (composite)
Method: single particle / : Li J, Elias E, Zhang K, Croce R, Zhu J

EMDB-18469:
Asymmetric structure of Satellite Tobacco Necrosis Virus-Like Particle with PS2/3 gRNA
Method: single particle / : Javed A, Mata PC, Stockley P

PDB-8qkp:
Asymmetric structure of Satellite Tobacco Necrosis Virus-Like Particle with PS2/3 gRNA
Method: single particle / : Javed A, Mata PC, Stockley P

EMDB-55084:
Native N.meningitidis PorB bound to the N-terminal domain of rmpM
Method: single particle / : Fernandez-Martinez D, Dumenil G

PDB-9spg:
Native N.meningitidis PorB bound to the N-terminal domain of rmpM
Method: single particle / : Fernandez-Martinez D, Dumenil G

EMDB-75627:
Human Slo1-paxilline complex under divalent chelated condition - full model
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-75628:
Human Slo1-PenitremA complex under divalent chelated condition - full model
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-75629:
Human Slo1-Paxilline complex under divalent chelated condition - gating-ring masked
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-75630:
Human Slo1-PenitremA complex under divalent chelated condition - gating-ring masked out
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-75631:
Human Slo1-Charybdotoxin complex under divalent chelated condition
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-75632:
Human Slo1-Charybdotoxin complex under divalent chelated condition - gating ring masked map
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-75633:
Human Slo1-Iberiotoxin complex under divalent chelated condition - gating ring masked map
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11cz:
Human Slo1-paxilline complex under divalent chelated condition - full model
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11da:
Human Slo1-PenitremA complex under divalent chelated condition - full model
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11db:
Human Slo1-Paxilline complex under divalent chelated condition - gating-ring masked
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11dc:
Human Slo1-PenitremA complex under divalent chelated condition - gating-ring masked out
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11dd:
Human Slo1-Charybdotoxin complex under divalent chelated condition
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11de:
Human Slo1-Charybdotoxin complex under divalent chelated condition - gating ring masked map
Method: single particle / : Chowdhury S, Pal K, Kallure GS

PDB-11df:
Human Slo1-Iberiotoxin complex under divalent chelated condition - gating ring masked map
Method: single particle / : Chowdhury S, Pal K, Kallure GS

EMDB-76150:
Cryo-EM of Hxc endopilus
Method: helical / : Sonani RR, Ball G, Chouikha I, Durand E, Voulhoux R, Egelman EH

EMDB-76151:
Cryo-EM of Xcp endopilus
Method: helical / : Sonani RR, Ball G, Chouikha I, Durand E, Voulhoux R, Egelman EH

PDB-11xb:
Cryo-EM of Hxc endopilus
Method: helical / : Sonani RR, Ball G, Chouikha I, Durand E, Voulhoux R, Egelman EH

PDB-11xc:
Cryo-EM of Xcp endopilus
Method: helical / : Sonani RR, Ball G, Chouikha I, Durand E, Voulhoux R, Egelman EH

EMDB-67942:
a bacterial caspase bound to ligand
Method: single particle / : Wang WH, Feng Y

EMDB-67943:
a bacterial caspase
Method: single particle / : Wang WH, Feng Y

EMDB-67944:
A bacterial caspase in an inhibited state
Method: single particle / : Wang WH, Feng Y

EMDB-72561:
The spike protein of HCoV-OC43 obtained from data collected on 100 kV Tundra at 230 kX magnification with Falcon C detector
Method: single particle / : Pathirage R, Acharya P

EMDB-72562:
The spike protein of HCoV-OC43 obtained from data collected on 100 kV Tundra at 180kX magnification with Falcon C detector
Method: single particle / : Pathirage R, Acharya P

EMDB-49111:
Yeast TIM23 complex inhibited by stendomycin
Method: single particle / : Park E

PDB-9n84:
Yeast TIM23 complex inhibited by stendomycin
Method: single particle / : Park E

EMDB-66190:
The in situ structure of adjacent conoid fibers from Toxoplasma gondii tachyzoite
Method: subtomogram averaging / : Li Z, Du W, Yang J, Lai D, Lun Z, Guo Q

PDB-9v7x:
TypeIII toxin-antitoxin complex TenpIN
Method: single particle / : Nadig K, Padmanabhan S, Dutta S, Singh M

EMDB-64795:
CryoEM map of TenpIN typeIII toxin-antitoxin complex
Method: single particle / : Nadig K, Padmanabhan P, Dutta S, Singh M

EMDB-66154:
The cryo-EM structural analysis of full-length PyrN
Method: single particle / : Feng Y, Du YL

EMDB-55481:
cryo-em structure of tri-hexameric hLRRC8A double mutation
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-55482:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation W168L/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-55483:
Cryo-EM structure of nomo-hexameric hLRRC8A L402W with ATP
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-55484:
Cryo-EM structure of homo-hexameric hLRRC8A L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-57359:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation I2C/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-29tc:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation I2C/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-9t33:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation W168L/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-9t34:
Cryo-EM structure of nomo-hexameric hLRRC8A L402W with ATP
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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