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Showing 1 - 50 of 4,363 items for (author: huang & n)

EMDB-38497:
Cryo-EM structure of the ClpP degradation system in Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

EMDB-38535:
Cryo-EM structure of the ClpC1:ClpP1P2 degradation complex in Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

EMDB-38536:
Cryo-EM structure of the ClpC1:ClpP1P2 degradation complex in Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

EMDB-38537:
Cryo-EM structure of ClpP1P2 in complex with ADEP1 from Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

PDB-8xn4:
Cryo-EM structure of the ClpP degradation system in Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

PDB-8xon:
Cryo-EM structure of the ClpC1:ClpP1P2 degradation complex in Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

PDB-8xoo:
Cryo-EM structure of the ClpC1:ClpP1P2 degradation complex in Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

PDB-8xop:
Cryo-EM structure of ClpP1P2 in complex with ADEP1 from Streptomyces hawaiiensis
Method: single particle / : Xu X, Long F

EMDB-36651:
hOCT1 in complex with metformin in outward open conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36652:
hOCT1 in complex with metformin in outward occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36653:
hOCT1 in complex with metformin in inward occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36654:
hOCT1 in complex with nb5660 in inward facing partially open 1 conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36655:
hOCT1 in complex with nb5660 in inward facing fully open conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36656:
hOCT1 in complex with nb5660 in inward facing partially open 2 conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36657:
hOCT1 in complex with spironolactone in outward facing partially occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-36658:
hOCT1 in complex with spironolactone in inward facing occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jts:
hOCT1 in complex with metformin in outward open conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jtt:
hOCT1 in complex with metformin in outward occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jtv:
hOCT1 in complex with metformin in inward occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jtw:
hOCT1 in complex with nb5660 in inward facing partially open 1 conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jtx:
hOCT1 in complex with nb5660 in inward facing fully open conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jty:
hOCT1 in complex with nb5660 in inward facing partially open 2 conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8jtz:
hOCT1 in complex with spironolactone in outward facing partially occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

PDB-8ju0:
hOCT1 in complex with spironolactone in inward facing occluded conformation
Method: single particle / : Zhang S, Zhu A, Kong F, Chen J, Lan B, He G, Gao K, Cheng L, Yan C, Chen L, Liu X

EMDB-41877:
Cryo-EM structure of long form insulin receptor (IR-B) in the apo state
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

EMDB-41878:
Cryo-EM structure of long form insulin receptor (IR-B) with four IGF2 bound, symmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

EMDB-41880:
Cryo-EM structure of long form insulin receptor (IR-B) with three IGF2 bound, asymmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

EMDB-43279:
Cryo-EM structure of short form insulin receptor (IR-A) with four IGF2 bound, symmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

EMDB-43280:
Cryo-EM structure of short form insulin receptor (IR-A) with three IGF2 bound, asymmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

PDB-8u4b:
Cryo-EM structure of long form insulin receptor (IR-B) in the apo state
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

PDB-8u4c:
Cryo-EM structure of long form insulin receptor (IR-B) with four IGF2 bound, symmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

PDB-8u4e:
Cryo-EM structure of long form insulin receptor (IR-B) with three IGF2 bound, asymmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

PDB-8vjb:
Cryo-EM structure of short form insulin receptor (IR-A) with four IGF2 bound, symmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

PDB-8vjc:
Cryo-EM structure of short form insulin receptor (IR-A) with three IGF2 bound, asymmetric conformation.
Method: single particle / : An W, Hall C, Li J, Huang A, Wu J, Park J, Bai XC, Choi E

EMDB-43091:
hGBP1 conformer on the bacterial outer membrane
Method: subtomogram averaging / : Zhu S, MacMicking J

EMDB-43153:
hGBP1 conformer on the bacterial outer membrane
Method: subtomogram averaging / : Zhu S, MacMicking J

EMDB-36138:
CrtSPARTA Octamer bound with guide-target
Method: single particle / : Guo LJ, Huang PP, Li ZX, Xiao YB, Chen MR

PDB-8jay:
CrtSPARTA Octamer bound with guide-target
Method: single particle / : Guo LJ, Huang PP, Li ZX, Xiao YB, Chen MR

EMDB-42820:
SARS-CoV-2 5' proximal stem-loop 5 and 6 with SL5b extended
Method: single particle / : Kretsch RC, Xu L, Zheludev IN, Zhou X, Huang R, Nye G, Li S, Zhang K, Chiu W, Das R

EMDB-37295:
Cryo-EM structure of the yeast TOM core complex crosslinked by BS3 (from TOM-TIM23 complex)
Method: single particle / : Wang Q, Guan ZY, Zhuang JJ, Huang R, Yin P

PDB-8w5k:
Cryo-EM structure of the yeast TOM core complex crosslinked by BS3 (from TOM-TIM23 complex)
Method: single particle / : Wang Q, Guan ZY, Zhuang JJ, Huang R, Yin P

EMDB-36059:
Short ago complexed with TIR-APAZ
Method: single particle / : Guo LJ, Huang PP, Li ZX, Xiao YB, Chen MR

PDB-8j84:
Short ago complexed with TIR-APAZ
Method: single particle / : Guo LJ, Huang PP, Li ZX, Xiao YB, Chen MR

EMDB-38482:
Voltage-gated sodium channel Nav1.7 variant M9
Method: single particle / : Yan N, Li Z, Wu Q, Huang G

EMDB-38483:
Voltage-gated sodium channel Nav1.7 variant M2
Method: single particle / : Yan N, Li Z, Wu Q, Huang G

EMDB-38484:
Voltage-gated sodium channel Nav1.7 variant M4
Method: single particle / : Yan N, Li Z, Wu Q, Huang G

PDB-8xmm:
Voltage-gated sodium channel Nav1.7 variant M9
Method: single particle / : Yan N, Li Z, Wu Q, Huang G

PDB-8xmn:
Voltage-gated sodium channel Nav1.7 variant M2
Method: single particle / : Yan N, Li Z, Wu Q, Huang G

PDB-8xmo:
Voltage-gated sodium channel Nav1.7 variant M4
Method: single particle / : Yan N, Li Z, Wu Q, Huang G

EMDB-36070:
SPARTA monomer bound with guide-target, state 2
Method: single particle / : Li ZX, Guo LJ, Huang PP, Xiao YB, Chen MR

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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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