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Showing 1 - 50 of 817 items for (author: x. & su)

PDB-8w12:
Cryo-EM structure of VP3-VP6 heterohexamer
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8w19:
Cryo-EM structure of BTV star-subcore
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8w1c:
Cryo-EM structure of BTV pre-subcore
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8w1i:
Cryo-EM structure of BTV subcore
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8w1o:
Cryo-EM structure of BTV virion
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8w1r:
Cryo-EM structure of BTV core
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8w1s:
Cryo-EM structure of BTV pre-core
Method: single particle / : Xia X, Sung PY, Martynowycz MW, Gonen T, Roy P, Zhou ZH

PDB-8jre:
Cryo-EM structure of a designed AAV8-based vector
Method: single particle / : Ke X, Luo S, Zheng Q, Jiang H, Liu F, Sun X

PDB-8j23:
Cryo-EM structure of FFAR2 complex in apo state
Method: single particle / : Tai L, Li F, Sun X, Tang W, Wang J

PDB-9asb:
Structure of human calcium-sensing receptor in complex with chimeric Gq (miniGisq) protein in nanodiscs
Method: single particle / : Zuo H, Park J, Frangaj A, Ye J, Lu G, Manning JJ, Asher WB, Lu Z, Hu G, Wang L, Mendez J, Eng E, Zhang Z, Lin X, Grasucci R, Hendrickson WA, Clarke OB, Javitch JA, Conigrave AD, Fan QR

PDB-9avg:
Structure of human calcium-sensing receptor in complex with chimeric Gs (miniGis) protein in nanodiscs
Method: single particle / : Zuo H, Park J, Frangaj A, Ye J, Lu G, Manning JJ, Asher WB, Lu Z, Hu G, Wang L, Mendez J, Eng E, Zhang Z, Lin X, Grasucci R, Hendrickson WA, Clarke OB, Javitch JA, Conigrave AD, Fan QR

PDB-9avl:
Structure of human calcium-sensing receptor in complex with Gi3 protein in nanodiscs
Method: single particle / : Zuo H, Park J, Frangaj A, Ye J, Lu G, Manning JJ, Asher WB, Lu Z, Hu G, Wang L, Mendez J, Eng E, Zhang Z, Lin X, Grasucci R, Hendrickson WA, Clarke OB, Javitch JA, Conigrave AD, Fan QR

PDB-9axf:
Structure of human calcium-sensing receptor in complex with chimeric Gq (miniGisq) protein in detergent
Method: single particle / : Zuo H, Park J, Frangaj A, Ye J, Lu G, Manning JJ, Asher WB, Lu Z, Hu G, Wang L, Mendez J, Eng E, Zhang Z, Lin X, Grasucci R, Hendrickson WA, Clarke OB, Javitch JA, Conigrave AD, Fan QR

PDB-9ayf:
Structure of human calcium-sensing receptor in complex with Gi1 (miniGi1) protein in detergent
Method: single particle / : Zuo H, Park J, Frangaj A, Ye J, Lu G, Manning JJ, Asher WB, Lu Z, Hu G, Wang L, Mendez J, Eng E, Zhang Z, Lin X, Grasucci R, Hendrickson WA, Clarke OB, Javitch JA, Conigrave AD, Fan QR

PDB-8j2g:
Human ZnT1-D47N/D255N mutant
Method: single particle / : Sun L, Liu X, Sun C, He B

PDB-8wtz:
potassium outward rectifier channel SKOR
Method: single particle / : Gao X, Sun T, Lu Y, Jia Y, Xu X, Zhang Y, Fu P, Yang G

PDB-8wui:
SKOR D312N L271P double mutation
Method: single particle / : Gao X, Sun T, Lu Y, Jia Y, Xu X, Zhang Y, Fu P, Yang G

PDB-8iwk:
ABCG25 Wild Type purified with DDM plus CHS in ABA-bound state
Method: single particle / : Sun L, Liu X, Ying W, Liao L, Wei H

PDB-8iwj:
ABCG25 Wild Type in Apo-state
Method: single particle / : Sun L, Liu X, Ying W, Liao L, Wei H

PDB-8iwn:
ABCG25 EQ mutant in ATP-bound state
Method: single particle / : Sun L, Liu X, Ying W, Liao L, Wei H

PDB-8j5q:
Cryo-EM structure of Mycobacterium tuberculosis OppABCD in the pre-translocation state
Method: single particle / : Yang X, Hu T, Zhang B, Rao Z

PDB-8j5r:
Cryo-EM structure of Mycobacterium tuberculosis OppABCD in the resting state
Method: single particle / : Yang X, Hu T, Zhang B, Rao Z

PDB-8j5s:
Cryo-EM structure of Mycobacterium tuberculosis OppABCD in the pre-catalytic intermediate state
Method: single particle / : Yang X, Hu T, Zhang B, Rao Z

PDB-8j5t:
Cryo-EM structure of Mycobacterium tuberculosis OppABCD in the catalytic intermediate state
Method: single particle / : Yang X, Hu T, Zhang B, Rao Z

PDB-8k20:
Cryo-EM structure of KEOPS complex from Arabidopsis thaliana
Method: single particle / : Zheng XX, Zhu L, Duan L, Zhang WH

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

PDB-8iyx:
Cryo-EM structure of the GPR34 receptor in complex with the antagonist YL-365
Method: single particle / : Jia GW, Wang X, Zhang CB, Dong HH, Su ZM

PDB-8woi:
Structure of the wild-type Arabidopsis ABCB19 in the apo state
Method: single particle / : Ying W, Wei H, Liu X, Sun L

PDB-8wom:
Structure of the wild-type Arabidopsis ABCB19 in the brassinolide-bound state
Method: single particle / : Ying W, Wei H, Liu X, Sun L

PDB-8woo:
Structure of the wild-type Arabidopsis ABCB19 in the brassinolide and AMP-PNP bound state
Method: single particle / : Ying W, Wei H, Liu X, Sun L

PDB-8wp0:
Structure of the Arabidopsis E529Q/E1174Q ABCB19 in the ATP bound state
Method: single particle / : Ying W, Wei H, Liu X, Sun L

PDB-8w9z:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP
Method: single particle / : Wu XX, Zhang Y

PDB-8wa0:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP-TEC1
Method: single particle / : Wu XX, Zhang Y

PDB-8wa1:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP-TEC2
Method: single particle / : Wu XX, Zhang Y

PDB-8inb:
Cryo-EM structure of Cas12j-SF05-crRNA-dsDNA complex
Method: single particle / : Zhang X, Duan ZQ, Zhu JK

PDB-8gqd:
Complex Structure of Arginine Kinase McsB and McsA from Staphylococcus aureus
Method: single particle / : Lu K, Luo B, Tao X, Li H, Xie Y, Zhao Z, Xia W, Su Z, Mao Z

PDB-8xjk:
Cloprosetnol bound Prostaglandin F2-alpha receptor-Gq Protein Complex
Method: single particle / : Zhang X, Li X, Liu G, Gong W

PDB-8xjl:
PGF2-alpha bound Prostaglandin F2-alpha receptor-Gq Protein Complex
Method: single particle / : Zhang X, Li X, Liu G, Gong W

PDB-8xjm:
Latanoprost acid bound Prostaglandin F2-alpha receptor-Gq Protein Complex
Method: single particle / : Zhang X, Li X, Liu G, Gong W

PDB-8xjn:
Cloprosetnol bound Thromboxane A2 receptor-Gq Protein Complex
Method: single particle / : Zhang X, Li X, Liu G, Gong W

PDB-8xjo:
U46619 bound Thromboxane A2 receptor-Gq Protein Complex
Method: single particle / : Zhang X, Li X, Liu G, Gong W

PDB-8wrz:
Cry-EM structure of cannabinoid receptor-arrestin 2 complex
Method: single particle / : Wang YX, Wang T, Wu LJ, Hua T, Liu ZJ

PDB-8jbf:
Senktide bound to active human neurokinin 3 receptor in complex with Gq
Method: single particle / : Sun WJ, Yang F, Zhang HH, Yuan QN, Yin WC, Shi P, Eric X, Tian CL

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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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