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Showing 1 - 50 of 3,739 items for (author: gao & w)

EMDB-63007: 
Consensus olfactory receptor consOR6 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63008: 
Consensus olfactory receptor consOR6 bound to alpha-hexyl cinnamaldehyde and in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63009: 
Consensus olfactory receptor consOR6 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63010: 
Consensus olfactory receptor consOR6 in complex with Gs trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63011: 
Consensus olfactory receptor bmOR6A2 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63012: 
Consensus olfactory receptor bmOR6A2 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63013: 
Consensus olfactory receptor bmOR6A2 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-66145: 
Cryo-EM structure of the apo-ConsOR5-Gs complex
Method: single particle / : Rong NK, Zhang MH, Yang F, Sun JP

EMDB-47765: 
Week 26 C3V5, gp41-GH and gp41-base epitope polyclonal antibodies from participant 202 in complex with ConM SOSIP
Method: single particle / : Lin RN, Torres JL, Tran AS, Ozorowski G, Ward AB

EMDB-65208: 
Structure of the Bacteroides fragilis NCTC9343 T6SS Hcp2-Hcp3 Heterohexamer in Complex with the Effector Bte1
Method: single particle / : Zheng SN, Chen Z, Li WX, Gao X

EMDB-65209: 
Bacteroides fragilis NCTC9343 T6SS Hcp2-Hcp3 heterohexamer complex
Method: single particle / : Zheng SN, Chen Z, Li WX, Gao X

PDB-9vnd: 
Structure of the Bacteroides fragilis NCTC9343 T6SS Hcp2-Hcp3 Heterohexamer in Complex with the Effector Bte1
Method: single particle / : Zheng SN, Chen Z, Li WX, Gao X

PDB-9vne: 
Bacteroides fragilis NCTC9343 T6SS Hcp2-Hcp3 heterohexamer complex
Method: single particle / : Zheng SN, Chen Z, Li WX, Gao X

EMDB-63174: 
Cryo-EM structure of the receptor of PL45-Olfr110-Gs complex
Method: single particle / : Rong NK, Zhang MH, Yang F, Sun JP

EMDB-63175: 
Cryo-EM structure of the receptor of PL45-Olfr110-Gs complex
Method: single particle / : Rong NK, Zhang MH, Yang F, Sun JP

EMDB-60812: 
Cryo-EM Structure of csy1-4 with crRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K, Shang K

EMDB-60815: 
Cryo-EM Structure of D-RNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K, Shang K

EMDB-60817: 
Cryo-EM Structure of rRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K, Shang K

EMDB-60819: 
Cryo-EM Structure of CRISPR
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K, Shang K

EMDB-66729: 
Cryo-EM structure of csy3 with crRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K

EMDB-66731: 
Cryo-EM structure of csy3 with crRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K

PDB-9irf: 
Cryo-EM Structure of csy1-4 with crRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K, Shang K

PDB-9xcf: 
Cryo-EM structure of csy3 with crRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K

PDB-9xcg: 
Cryo-EM structure of csy3 with crRNA
Method: single particle / : Gao X, Cui S, Zhu H, Zhu K

EMDB-64144: 
Cryo-EM Structure of Apo-G6PT1
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-64147: 
Cryo-EM Structure of G6PT1-apo monomer in pi buffer
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-64148: 
Cryo-EM Structure of G6PT1 bound with GlcN6P
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-66194: 
Cryo-EM Structure of G6PT1 treated with G6P
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-66215: 
Cryo-EM structure of Pi-free G6PT1 treated with GlcN6P
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-66658: 
Cryo-EM Structure of G6PT1 bound with lower pi
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-66660: 
Cryo-EM Structure of G6PT1 without GlcN6P
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-66661: 
Cryo-EM Structure of G6PT1 bound with upper pi
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9ugx: 
Cryo-EM Structure of G6PT1-apo monomer in pi buffer
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9ugy: 
Cryo-EM Structure of G6PT1 bound with GlcN6P
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9ws8: 
Cryo-EM Structure of G6PT1 treated with G6P
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9wt2: 
Cryo-EM structure of Pi-free G6PT1 treated with GlcN6P
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9x8x: 
Cryo-EM Structure of G6PT1 bound with lower pi
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9x95: 
Cryo-EM Structure of G6PT1 without GlcN6P
Method: single particle / : Shuai G, Xia Y, Qian W

PDB-9x97: 
Cryo-EM Structure of G6PT1 bound with upper pi
Method: single particle / : Shuai G, Xia Y, Qian W

EMDB-61420: 
The complex structure of Y510-9709 and NET determined with Cryo-EM
Method: single particle / : Jia Y, Gao B, Tan J, Yan C, Zhang W, Lan Y, Xiao Y, Huang Y, Jin Y, Yuan Y, Tian J, Ma W, Zhang Y

EMDB-61426: 
The complex structure of 0086-0043 and NET determined with Cryo-EM.
Method: single particle / : Jia YJ, Gao B, Tan JX, Yan CY, Zhang W, Lan YY

PDB-9jel: 
The complex structure of Y510-9709 and NET determined with Cryo-EM
Method: single particle / : Jia Y, Gao B, Tan J, Yan C, Zhang W, Lan Y

PDB-9jf3: 
The complex structure of 0086-0043 and NET determined with Cryo-EM.
Method: single particle / : Jia YJ, Gao B, Tan JX, Yan CY, Zhang W, Lan YY

EMDB-64647: 
Cryo-EM Structure of the Vaccinia Virus Entry/Fusion Complex (EFC) Lacking the F9 Subunit
Method: single particle / : Wang CH, Lin CSH, Chang W

EMDB-64648: 
Cryo-EM Structure of the Vaccinia Virus Entry/Fusion Complex (EFC) Including the F9 Subunit
Method: single particle / : Wang CH, Lin CSH, Chang W

PDB-9uzo: 
Cryo-EM Structure of the Vaccinia Virus Entry/Fusion Complex (EFC) Lacking the F9 Subunit
Method: single particle / : Wang CH, Lin CSH, Chang W
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