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Showing 1 - 50 of 100 items for (author: c. & tang)

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-8wcn:
Cryo-EM structure of PAO1-ImcA with GMPCPP
Method: single particle / : Zhan XL, Zhang K, Wang CC, Fan Q, Tang XJ, Zhang X, Wang K, Fu Y, Liang HH

PDB-8iwo:
The rice Na+/H+ antiporter SOS1 in an auto-inhibited state
Method: single particle / : Zhang XY, Tang LH, Zhang CR, Nie JW

PDB-8j2m:
The truncated rice Na+/H+ antiporter SOS1 (1-976) in a constitutively active state
Method: single particle / : Zhang XY, Tang LH, Zhang CR, Nie JW

PDB-8blo:
Human Urea Transporter UT-A (N-Terminal Domain Model)
Method: single particle / : Chi G, Pike ACW, Maclean EM, Mukhopadhyay SMM, Bohstedt T, Scacioc A, Wang D, McKinley G, Fernandez-Cid A, Arrowsmith CH, Bountra C, Edwards A, Burgess-Brown NA, van Putte W, Duerr K

PDB-8blp:
Human Urea Transporter UT-B/UT1 in Complex with Inhibitor UTBinh-14
Method: single particle / : Chi G, Dietz L, Pike ACW, Maclean EM, Mukhopadhyay SMM, Bohstedt T, Wang D, Scacioc A, McKinley G, Arrowsmith CH, Edwards A, Bountra C, Fernandez-Cid A, Burgess-Brown NA, Duerr KL

PDB-8sai:
Cryo-EM structure of GPR34-Gi complex
Method: single particle / : Yong XH, Zhao C, Yan W, Shao ZH

PDB-8dzj:
Cryo-EM structure of Acidibacillus sulfuroxidans Cas12f in complex with sgRNA and target DNA
Method: single particle / : Liu C, Zhao M

PDB-7ye4:
BAM-EspP complex structure with BamA-G431C and G781C/EspP-N1293C and A1043C mutations in nanodisc
Method: single particle / : Shen C, Chang S, Luo Q, Zhang Z, Luo B, Lu G, Zhu X, Wei X, Dong C, Zhang X, Tang X, Dong H

PDB-7ye6:
BAM-EspP complex structure with BamA-N427C/EspP-R1297C mutations in nanodisc
Method: single particle / : Shen C, Chang S, Luo Q, Zhang Z, Luo B, Lu G, Zhu X, Wei X, Dong C, Zhang X, Tang X, Dong H

PDB-8d55:
Closed state of SARS-CoV-2 BA.2 variant spike protein
Method: single particle / : Zhang J, Tang WC, Gao HL, Shi W, Peng HQ, Volloch SR, Xiao TS, Chen B

PDB-8d56:
One RBD-up state of SARS-CoV-2 BA.2 variant spike protein
Method: single particle / : Zhang J, Tang WC, Gao HL, Shi W, Peng HQ, Volloch SR, Xiao TS, Chen B

PDB-8d5a:
Middle state of SARS-CoV-2 BA.2 variant spike protein
Method: single particle / : Zhang J, Tang WC, Gao HL, Shi W, Peng HQ, Volloch SR, Xiao TS, Chen B

PDB-8bnz:
BAM-EspP complex structure with BamA-G431C/EspP-N1293C mutations in nanodisc
Method: single particle / : Shen C, Chang S, Luo Q, Zhang Z, Xie T, Luo B, Lu G, Zhu X, Wei X, Dong C, Zhou R, Zhang X, Tang X, Dong H

PDB-8bo2:
BAM-EspP complex structure with BamA-S425C/EspP-S1299C mutations in nanodisc
Method: single particle / : Shen C, Chang S, Luo Q, Zhang Z, Xie T, Luo B, Lu G, Zhu X, Wei X, Dong C, Zhou R, Zhang X, Tang X, Dong H

PDB-8gjm:
17b10 fab in complex with full-length SARS-CoV-2 Spike G614 trimer
Method: single particle / : Kwon HJ, Zhang J, Kosikova M, Tang WC, Rodriguez UO, Peng HQ, Meseda CA, Pedro CL, Schmeisser F, Lu JM, Zhou B, Davis CT, Wentworth DE, Chen WH, Shriver MC, Pasetti MF, Weir JP, Chen B, Xie H

PDB-8gjn:
17B10 fab in complex with up-RBD of SARS-CoV-2 Spike G614 trimer
Method: single particle / : Kwon HJ, Zhang J, Kosikova M, Tang WC, Rodriguez UO, Peng HQ, Meseda CA, Pedro CL, Schmeisser F, Lu JM, Zhou B, Davis CT, Wentworth DE, Chen WH, Shriver MC, Pasetti MF, Weir JP, Chen B, Xie H

PDB-7xk8:
Cryo-EM structure of the Neuromedin U receptor 2 (NMUR2) in complex with G Protein and its endogeneous Peptide-Agonist NMU25
Method: single particle / : Zhao W, Wenru Z, Mu W, Minmin L, Shutian C, Tingting T, Gisela S, Holger W, Albert B, Cuiying Y, Xiaojing C, Han S, Wu B, Zhao Q

PDB-8h8a:
Type VI secretion system effector RhsP in its post-autoproteolysis and monomeric form
Method: single particle / : Tang L, Dong SQ, Rasheed N, Wu HW, Zhou NK, Li HD, Wang ML, Zheng J, He J, Chao WCH

PDB-8h8b:
Type VI secretion system effector RhsP in its pre-autoproteolysis and monomeric form
Method: single particle / : Tang L, Dong SQ, Rasheed N, Wu HW, Zhou NK, Li HD, Wang ML, Zheng J, He J, Chao WCH

PDB-8h8c:
Type VI secretion system effector RhsP in its post-autoproteolysis and dimeric form
Method: single particle / : Tang L, Dong SQ, Rasheed N, Wu HW, Zhou NK, Li HD, Wang ML, Zheng J, He J, Chao WCH

PDB-7xo0:
Minor polymorph inalpha-synuclein fibril seeded by cerebrospinal fluid from a mid-to-late stage (mid-PD-1) Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7xo1:
Major polymorph in alpha-synuclein fibril seeded by cerebrospinal fluid from a mid-to-late stage (mid-PD-1) Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7xo2:
Minor polymorph in alpha-synuclein fibril seeded by cerebrospinal fluid from a mid-to-late stage (mid-PD-4) Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7xo3:
Type 1C alpha-synuclein fibril seeded by cerebrospinal fluid from a mid-to-late stage (mid-PD-4) Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-8h03:
Major polymorph in alpha-synuclein fibril seeded by cerebrospinal fluid from a preclinical Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-8h04:
Major polymorph in alpha-synuclein fibril seeded by cerebrospinal fluid from a postmortal Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-8h05:
Minor polymorph in alpha-synuclein fibril seeded by cerebrospinal fluid from a postmortal Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7yg4:
Structure of WTAP-VIRMA in the m6A writer complex
Method: single particle / : Yan XH, Guan ZY, Tang C, Yin P

PDB-7tj5:
SthK closed state, cAMP-bound in the presence of POPA
Method: single particle / : Schmidpeter PA, Nimigean CM

PDB-7tj6:
SthK open state, cAMP-bound in the presence of POPA
Method: single particle / : Schmidpeter PA, Nimigean CM

PDB-7tkt:
SthK closed state, cAMP-bound in the presence of detergent
Method: single particle / : Rheinberger J, Schmidpeter PA, Nimigean CM

PDB-7sjn:
HtrA1:Fab15H6.v4 complex
Method: single particle / : Gerhardy S, Green E, Estevez A, Arthur CP, Ultsch M, Rohou A, Kirchhofer D

PDB-7sjo:
HtrA1S328A:Fab15H6.v4 complex
Method: single particle / : Gerhardy S, Green E, Estevez A, Arthur CP, Ultsch M, Rohou A, Kirchhofer D

PDB-7xdt:
Structural basis for Gemin5 decamer-mediated mRNA binding
Method: single particle / : Guo Q, Zhao S, Zhang K, Xu C

PDB-7xgr:
Structure of Gemin5 C-terminal region (protomer)
Method: single particle / : Guo Q, Zhao S, Zhang K, Xu C

PDB-7v47:
Type 1A alpha-synuclein fibril seeded by cerebrospinal fluid from a preclinical Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7v48:
Type 1D alpha-synuclein fibril seeded by cerebrospinal fluid from a postmortal Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7v49:
Type 4 alpha-synuclein fibril seeded by cerebrospinal fluid from a postmortal Parkinson's disease patient
Method: helical / : Fan Y, Sun YP, Wang J, Liu C

PDB-7fd2:
Cryo-EM structure of an alphavirus, Getah virus
Method: single particle / : Liu Z, Liu C, Wang A

PDB-7tbl:
Composite structure of the human nuclear pore complex (NPC) cytoplasmic face generated with a 12A cryo-ET map of the purified HeLa cell NPC
Method: subtomogram averaging / : Bley CJ, Nie S, Mobbs GW, Petrovic S, Gres AT, Liu X, Mukherjee S, Harvey S, Huber FM, Lin DH, Brown B, Tang AW, Rundlet EJ, Correia AR, Chen S, Regmi SG, Stevens TA, Jette CA, Dasso M, Patke A, Palazzo AF, Kossiakoff AA, Hoelz A

PDB-7tbm:
Composite structure of the dilated human nuclear pore complex (NPC) generated with a 37A in situ cryo-ET map of CD4+ T cell NPC
Method: subtomogram averaging / : Bley CJ, Nie S, Mobbs GW, Petrovic S, Gres AT, Liu X, Mukherjee S, Harvey S, Huber FM, Lin DH, Brown B, Tang AW, Rundlet EJ, Correia AR, Chen S, Regmi SG, Stevens TA, Jette CA, Dasso M, Patke A, Palazzo AF, Kossiakoff AA, Hoelz A

PDB-7tj8:
Cryo-EM structure of the human Nax channel in complex with beta3 solved in nanodiscs
Method: single particle / : Noland CL, Kschonsak M, Ciferri C, Payandeh J

PDB-7tj9:
Cryo-EM structure of the human Nax channel in complex with beta3 solved in GDN
Method: single particle / : Noland CL, Kschonsak M, Ciferri C, Payandeh J

PDB-7x6l:
Cryo-EM structure of H3 hemagglutinin from A/HongKong/01/1968 in complex with a neutralizing antibody 28-12
Method: single particle / : Cong Y, Liu CX

PDB-7x6o:
Cryo-EM structure of H1 hemagglutinin from A/Washington/05/2011 in complex with a neutralizing antibody 28-12
Method: single particle / : Cong Y, Liu CX

PDB-7ngb:
Structure of Wild-Type Human Potassium Chloride Transporter KCC3 in NaCl (LMNG/CHS)
Method: single particle / : Chi G, Man H, Pike ACW, Wang D, McKinley G, Mukhopadhyay SMM, MacLean EM, Chalk R, Moreau C, Snee M, Abrusci P, Arrowsmith CH, Bountra C, Edwards AM, Marsden BD, Burgess-Brown NA, Duerr KL

PDB-7ain:
Structure of Human Potassium Chloride Transporter KCC3 S45D/T940D/T997D in NaCl (Reference Map)
Method: single particle / : Chi G, Man H, Ebenhoch R, Reggiano G, Pike ACW, Wang D, McKinley G, Mukhopadhyay SMM, MacLean EM, Chalk R, Moreau C, Snee M, Bohstedt T, Singh NK, Abrusci P, Arrowsmith CH, Bountra C, Edwards AM, Marsden BD, Burgess-Brown NA, DiMaio F, Duerr KL, Structural Genomics Consortium (SGC)

PDB-7aio:
Structure of Human Potassium Chloride Transporter KCC3 S45D/T940D/T997D in NaCl (Subclass)
Method: single particle / : Chi G, Man H, Ebenhoch R, Reggiano G, Pike ACW, Wang D, McKinley G, Mukhopadhyay SMM, MacLean EM, Chalk R, Moreau C, Snee M, Bohstedt T, Singh NK, Abrusci P, Arrowsmith CH, Bountra C, Edwards AM, Marsden BD, Burgess-Brown NA, DiMaio F, Duerr KL, Structural Genomics Consortium (SGC)

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
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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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