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Showing 1 - 50 of 13,194 items for (author: wan & t)

EMDB-67027: 
Cryo-EM structure of Integrin alpha V beta 6 complex with a bicyclic inhibitory peptide
Method: single particle / : Wang JC, An YN

PDB-9xmm: 
Cryo-EM structure of Integrin alpha V beta 6 complex with a bicyclic inhibitory peptide
Method: single particle / : Wang JC, An YN

EMDB-64797: 
Cryo-EM structure of free-state VbAgo
Method: single particle / : Wu S

EMDB-64798: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA
Method: single particle / : Wu S

EMDB-64822: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA
Method: single particle / : Shan W

EMDB-64826: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in target-released state
Method: single particle / : Wu S

EMDB-64832: 
Structure of the Argonaute protein from Verrucomicrobiota bacterium in complex with guide DNA and target RNA in dimeric state.
Method: single particle / : Wu S

EMDB-64859: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

EMDB-64871: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

EMDB-64873: 
The transition-state structure of the Argonaute protein from a Verrucomicrobia bacterium in complex with guide DNA and target RNA.
Method: single particle / : Wu S

PDB-9v66: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA
Method: single particle / : Wu S

PDB-9v7s: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA
Method: single particle / : Shan W

PDB-9v7z: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in target-released state
Method: single particle / : Wu S

PDB-9v8a: 
Structure of the Argonaute protein from Verrucomicrobiota bacterium in complex with guide DNA and target RNA in dimeric state.
Method: single particle / : Wu S

PDB-9v93: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

PDB-9v9g: 
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

PDB-9v9i: 
The transition-state structure of the Argonaute protein from a Verrucomicrobia bacterium in complex with guide DNA and target RNA.
Method: single particle / : Wu S

EMDB-74399: 
Cryo-EM structure of hepatic amyloid fibril from a variant ATTRV122delta, single filament morphology
Method: helical / : Nguyen BA, Ahmed Y, Saelices L

PDB-9zld: 
Cryo-EM structure of hepatic amyloid fibril from a variant ATTRV122delta, single filament morphology
Method: helical / : Nguyen BA, Ahmed Y, Saelices L

EMDB-65007: 
Structural basis for the assembly and translocation of the Vip1-Vip2 insecticidal binary toxin from Bacillus thuringiensis
Method: single particle / : Chen P, Zhao T

EMDB-65009: 
Structural basis for the assembly and translocation of the Vip1-Vip2 insecticidal binary toxin from Bacillus thuringiensis
Method: single particle / : Chen P, Zhao T

EMDB-65010: 
Structural basis for the assembly and translocation of the Vip1-Vip2 insecticidal binary toxin from Bacillus thuringiensis
Method: single particle / : Chen P, Zhao T

PDB-9veg: 
Structural basis for the assembly and translocation of the Vip1-Vip2 insecticidal binary toxin from Bacillus thuringiensis
Method: single particle / : Chen P, Zhao T

PDB-9vej: 
Structural basis for the assembly and translocation of the Vip1-Vip2 insecticidal binary toxin from Bacillus thuringiensis
Method: single particle / : Chen P, Zhao T

PDB-9vek: 
Structural basis for the assembly and translocation of the Vip1-Vip2 insecticidal binary toxin from Bacillus thuringiensis
Method: single particle / : Chen P, Zhao T

EMDB-65635: 
Cryo-EM structure of CpcL-PBS3
Method: single particle / : Mao ZY, Li ZH, Han GY

EMDB-65729: 
Cryo-EM structure of CpcL-PBS2
Method: single particle / : Mao ZY, Li ZH, Han GY

EMDB-65883: 
Cryo-EM structure of PSI-CpcL
Method: single particle / : Mao ZY, Li ZH, Han GY

EMDB-49891: 
Cryo-EM of Class-2 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

EMDB-49895: 
Cryo-EM of Class-3 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

EMDB-49913: 
Cryo-EM of Class-1 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

EMDB-49914: 
Cryo-EM of Class-4 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

PDB-9nwr: 
Cryo-EM of Class-2 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

PDB-9nwv: 
Cryo-EM of Class-3 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

PDB-9nxz: 
Cryo-EM of Class-1 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

PDB-9ny0: 
Cryo-EM of Class-4 of YM1P nanotube
Method: helical / : Yi M, Zia A, Egelman EH, Xu B, Wang F

EMDB-64853: 
membrane protein S6A8 with RGX
Method: single particle / : Zhang SS

EMDB-64854: 
membrane protein S6A8 with Crea
Method: single particle / : Zhang SS

EMDB-64855: 
membrane protein S6A8 apo
Method: single particle / : Zhang SS

EMDB-56516: 
In situ Dictyostelium discoideum cytosolic vault
Method: subtomogram averaging / : Geissler K, Kreysing JP, Beck M

EMDB-64113: 
Phage T4 hub in post-tail contraction, pre-genome-release state
Method: single particle / : Shao Q, Dong J, Wang A, Li L, Zheng Y, Li H, Li Y, Zhang Q, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9ufn: 
Phage T4 hub in post-tail contraction, pre-genome-release state
Method: single particle / : Shao Q, Dong J, Wang A, Li L, Zheng Y, Li H, Li Y, Zhang Q, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-54248: 
Trispecific fab 17 with O1M 93C virus like particle
Method: single particle / : Stuart DI, Duyvesteyn HME, Ren J, Fry EE
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