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Showing 1 - 50 of 3,877 items for (author: wu & l)

EMDB-19861:
Vertebrate microtubule-capping gamma-tubulin ring complex
Method: single particle / : Vermeulen BJA, Pfeffer S

EMDB-37362:
CryoEM structure of human PI3K-alpha (P85/P110-H1047R) with QR-7909 binding at an allosteric site
Method: single particle / : Huang X, Ren X, Zhong W

EMDB-37363:
CryoEM structure of human PI3K-alpha (P85/P110-H1047R) with QR-8557 binding at an allosteric site
Method: single particle / : Huang X, Ren X, Zhong W

PDB-8w9a:
CryoEM structure of human PI3K-alpha (P85/P110-H1047R) with QR-7909 binding at an allosteric site
Method: single particle / : Huang X, Ren X, Zhong W

PDB-8w9b:
CryoEM structure of human PI3K-alpha (P85/P110-H1047R) with QR-8557 binding at an allosteric site
Method: single particle / : Huang X, Ren X, Zhong W

EMDB-35323:
Cryo-EM structure of the ISFba1 TnpB-reRNA-dsDNA complex
Method: single particle / : Yin M, Zhou F, Zhu Y, Huang Z

PDB-8iaz:
Cryo-EM structure of the ISFba1 TnpB-reRNA-dsDNA complex
Method: single particle / : Yin M, Zhou F, Zhu Y, Huang Z

EMDB-35929:
Cryo-EM structure of Ufd4 in complex with K29/48 triUb
Method: single particle / : Ai HS, Mao JX, Wu XW, Pan M, Liu L

PDB-8j1p:
Cryo-EM structure of Ufd4 in complex with K29/48 triUb
Method: single particle / : Ai HS, Mao JX, Wu XW, Pan M, Liu L

EMDB-35931:
cryo-EM structures of Ufd4 in complex with Ubc4-Ub
Method: single particle / : Ai HS, Mao JX, Wu XW, Cai HY, Pan M, Liu L

PDB-8j1r:
cryo-EM structures of Ufd4 in complex with Ubc4-Ub
Method: single particle / : Ai HS, Mao JX, Wu XW, Cai HY, Pan M, Liu L

EMDB-41363:
Cryo-EM structure of DDB1deltaB-DDA1-DCAF5
Method: single particle / : Yue H, Hunkeler M, Roy Burman SS, Fischer ES

PDB-8tl6:
Cryo-EM structure of DDB1deltaB-DDA1-DCAF5
Method: single particle / : Yue H, Hunkeler M, Roy Burman SS, Fischer ES

EMDB-35906:
cryo-EM structure of human EMC
Method: single particle / : Li M, Zhang C, Wu J, Lei M

EMDB-35907:
cryo-EM structure of human EMC and VDAC
Method: single particle / : Li M, Zhang C, Wu J, Lei M

PDB-8j0n:
cryo-EM structure of human EMC
Method: single particle / : Li M, Zhang C, Wu J, Lei M

PDB-8j0o:
cryo-EM structure of human EMC and VDAC
Method: single particle / : Li M, Zhang C, Wu J, Lei M

EMDB-19177:
Structure of the 55LCC ATPase complex
Method: single particle / : Foglizzo M, Degtjarik O, Zeqiraj E

PDB-8rhn:
Structure of the 55LCC ATPase complex
Method: single particle / : Foglizzo M, Degtjarik O, Zeqiraj E

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-38158:
P/Q type calcium channel
Method: single particle / : Yan N, Li Z, Cong Y, Wu T, Wang T

EMDB-38159:
P/Q type calcium channel in complex with omega-conotoxin MVIIC
Method: single particle / : Yan N, Li Z, Cong Y, Wu T, Wang T

EMDB-38160:
P/Q type calcium channel in complex with omega-Agatoxin IVA
Method: single particle / : Yan N, Li Z, Cong Y, Wu T, Wang T

PDB-8x90:
P/Q type calcium channel
Method: single particle / : Yan N, Li Z, Cong Y, Wu T, Wang T

PDB-8x91:
P/Q type calcium channel in complex with omega-conotoxin MVIIC
Method: single particle / : Yan N, Li Z, Cong Y, Wu T, Wang T

PDB-8x93:
P/Q type calcium channel in complex with omega-Agatoxin IVA
Method: single particle / : Yan N, Li Z, Cong Y, Wu T, Wang T

EMDB-37695:
Cryo-EM structure of human SIDT1 protein with C1 symmetry at neutral pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

EMDB-37696:
Cryo-EM structure of human SIDT1 protein with C2 symmetry at neutral pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

EMDB-37697:
Cryo-EM structure of human SIDT1 protein with C1 symmetry at low pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

EMDB-37698:
Cryo-EM structure of human SIDT1 protein with C2 symmetry at low pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

PDB-8woq:
Cryo-EM structure of human SIDT1 protein with C1 symmetry at neutral pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

PDB-8wor:
Cryo-EM structure of human SIDT1 protein with C2 symmetry at neutral pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

PDB-8wos:
Cryo-EM structure of human SIDT1 protein with C1 symmetry at low pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

PDB-8wot:
Cryo-EM structure of human SIDT1 protein with C2 symmetry at low pH
Method: single particle / : Liu W, Tang M, Wang J, Zhang X, Wu S, Ru H

EMDB-33347:
Cryo-EM structure of S glycoprotein encoded by the Covid-19 mRNA vaccine candidate RQ3013 (Postfusion state)
Method: single particle / : Wu Z, Yu Z, Tan S, Lu J, Lu G, Lin J

PDB-7xog:
Cryo-EM structure of S glycoprotein encoded by the Covid-19 mRNA vaccine candidate RQ3013 (Postfusion state)
Method: single particle / : Wu Z, Yu Z, Tan S, Lu J, Lu G, Lin J

EMDB-35832:
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-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

EMDB-41625:
Type IV pilus from Pseudomonas PAO1 strain
Method: single particle / : Thongchol J, Zhang J, Zeng L

EMDB-41632:
Asymmetric reconstruction of mature PP7 virions
Method: single particle / : Thongchol J, Zhang J, Zeng L

EMDB-41633:
Type IV pilus from Pseudomonas PAO1 strain with PP7 Maturation protein
Method: single particle / : Thongchol J, Zhang J, Zeng L

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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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  • The previous official version 1.9 will be removed from the archive.

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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."
  • 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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