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Showing 1 - 50 of 1,934 items for (author: jiang & d)

EMDB-43046:
Full length integrin AlphaIIbBeta3 in pre-active state
Method: single particle / : Huo T, Wu H, Wang Z

EMDB-32979:
Cryo-EM structure of Coxsackievirus B1 A-particle in complex with nAb 8A10 (CVB1-A:8A10)
Method: single particle / : Zheng Q, Zhu R, Sun H, Cheng T, Li S, Xia N

PDB-7x35:
Cryo-EM structure of Coxsackievirus B1 A-particle in complex with nAb 8A10 (CVB1-A:8A10)
Method: single particle / : Zheng Q, Zhu R, Sun H, Cheng T, Li S, Xia N

EMDB-41275:
CryoEM structure of neutralizing antibodies CBH-7 and HC84.26 in complex with Hepatitis C virus envelope glycoprotein E2
Method: single particle / : Shahid S, Jiang L, Liu Y, Hasan SS, Mariuzza RA

PDB-8thz:
CryoEM structure of neutralizing antibodies CBH-7 and HC84.26 in complex with Hepatitis C virus envelope glycoprotein E2
Method: single particle / : Shahid S, Jiang L, Liu Y, Hasan SS, Mariuzza RA

EMDB-44635:
Inactive mu opioid receptor bound to Nb6, naloxone and NAM
Method: single particle / : O'Brien ES, Wang H, Kaavya Krishna K, Zhang C, Kobilka BK

PDB-9bjk:
Inactive mu opioid receptor bound to Nb6, naloxone and NAM
Method: single particle / : O'Brien ES, Wang H, Kaavya Krishna K, Zhang C, Kobilka BK

EMDB-43011:
Phosphorylated, ATP-bound, E1371Q human cystic fibrosis transmembrane conductance regulator (E1371Q-CFTR)
Method: single particle / : Gao X, Hwang T

EMDB-43014:
Phosphorylated, ATP-bound, inhibitor 172-bound E1371Q human cystic fibrosis transmembrane conductance regulator
Method: single particle / : Gao X, Hwang T

EMDB-38065:
Cryo-EM structures of human XPR1 in closed states
Method: single particle / : Jiang DH, Yan R

PDB-8x5b:
Cryo-EM structures of human XPR1 in closed states
Method: single particle / : Jiang DH, Yan R

EMDB-38067:
Cryo-EM structure of human XPR1 in open state
Method: single particle / : Jiang DH, Yan R

PDB-8x5e:
Cryo-EM structure of human XPR1 in open state
Method: single particle / : Jiang DH, Yan R

EMDB-38068:
human XPR1 in complex with InsP6
Method: single particle / : Jiang DH, Yan R

PDB-8x5f:
human XPR1 in complex with InsP6
Method: single particle / : Jiang DH, Yan R

EMDB-43706:
Human DNA polymerase theta helicase domain in complex with ssDNA, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

EMDB-43816:
Human DNA polymerase theta helicase domain in complex with AMP-PNP, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

EMDB-43817:
Human DNA polymerase theta helicase domain dimer, apo-form
Method: single particle / : Ito F, Li Z, Chen XS

EMDB-43818:
Human DNA polymerase theta helicase domain tetramer, apo-form
Method: single particle / : Ito F, Li Z, Chen XS

EMDB-45217:
Human DNA polymerase theta helicase domain in microhomology annealed state 1, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

EMDB-45218:
Human DNA polymerase theta helicase domain in microhomology annealed state 2, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

PDB-8w0a:
Human DNA polymerase theta helicase domain in complex with ssDNA, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

PDB-9asj:
Human DNA polymerase theta helicase domain in complex with AMP-PNP, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

PDB-9ask:
Human DNA polymerase theta helicase domain dimer, apo-form
Method: single particle / : Ito F, Li Z, Chen XS

PDB-9asl:
Human DNA polymerase theta helicase domain tetramer, apo-form
Method: single particle / : Ito F, Li Z, Chen XS

PDB-9c5q:
Human DNA polymerase theta helicase domain in microhomology annealed state 2, dimer form
Method: single particle / : Ito F, Li Z, Chen XS

EMDB-19395:
CryoEM structure of recombinant human Bri2 BRICHOS oligomers
Method: single particle / : Chen G, Johansson J, Hebert H

PDB-8rnu:
CryoEM structure of recombinant human Bri2 BRICHOS oligomers
Method: single particle / : Chen G, Johansson J, Hebert H

EMDB-37210:
Prefusion RSV F Bound to Lonafarnib and D25 Fab
Method: single particle / : Yang Q, Xue B, Liu F, Peng W, Chen X

PDB-8kg5:
Prefusion RSV F Bound to Lonafarnib and D25 Fab
Method: single particle / : Yang Q, Xue B, Liu F, Peng W, Chen X

EMDB-44839:
Intact V-ATPase State 2 and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44840:
Intact V-ATPase State 3 and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44841:
Intact V-ATPase State 3 in synaptophysin knock-out isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44842:
Intact V-ATPase State 2 in synaptophysin knock-out isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44843:
Intact V-ATPase State 1 and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44844:
Intact V-ATPase State 1 in synaptophysin knock-out isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44845:
V0-only V-ATPase in synaptophysin gene knock-out mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44846:
V0-only V-ATPase and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44847:
Tomograms of isolated synaptic vesicles from Syp-/- mouse brain
Method: electron tomography / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44848:
Tomograms of isolated synaptic vesicles from wild-type mouse brain
Method: electron tomography / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44855:
Intact state1 V-ATPase of isolated synaptic vesicles from wild-type mouse brain by subtomogram averaging
Method: subtomogram averaging / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44856:
Intact state2 V-ATPase of isolated synaptic vesicles from wild-type mouse brain by subtomogram averaging
Method: subtomogram averaging / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44857:
Intact state3 V-ATPase of isolated synaptic vesicles from wild-type mouse brain by subtomogram averaging
Method: subtomogram averaging / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

EMDB-44858:
V0-only V-ATPase of isolated synaptic vesicles from wild-type mouse brain by subtomogram averaging
Method: subtomogram averaging / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

PDB-9bra:
Intact V-ATPase State 2 and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

PDB-9brq:
Intact V-ATPase State 3 and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

PDB-9brr:
Intact V-ATPase State 3 in synaptophysin knock-out isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

PDB-9brs:
Intact V-ATPase State 2 in synaptophysin knock-out isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

PDB-9brt:
Intact V-ATPase State 1 and synaptophysin complex in mouse brain isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

PDB-9bru:
Intact V-ATPase State 1 in synaptophysin knock-out isolated synaptic vesicles
Method: single particle / : Wang C, Jiang W, Yang K, Wang X, Guo Q, Brunger AT

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

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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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  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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