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Showing 1 - 50 of 875 items for (author: cao & b)

EMDB-42049:
Cryo-EM Structure of FBOX22-BACH1BTB
Method: single particle / : Shi H, Cao S, Zheng N

EMDB-42051:
Cryo-EM Structure of SCF-FBOX22-BACH1BTB
Method: single particle / : Shi H, Cao S, Zheng N

EMDB-42064:
Structure of BACH1 BTB domain-bound FBXL17 ubiquitin ligase
Method: single particle / : Shi H, Cao S, Zheng N

EMDB-42102:
Structure of SCF-FBXL17-BACH1BTB E3 ligase complex
Method: single particle / : Shi H, Cao S

EMDB-42105:
Cryo-EM structure of dimeric SCF-FBXL17-BACH1BTB E3 ligase complex close conformation
Method: single particle / : Shi H, Cao S, Zheng N

EMDB-42106:
Cryo-EM structure of dimeric FBXL17-BACH1BTB E3 ubiquitin ligase complex
Method: single particle / : Shi H, Cao S, Zheng N

EMDB-42115:
Cryo-EM structure of dimeric SCF-FBXL17-BACH1BTB open conformation
Method: single particle / : Shi H, Cao S, Zheng N

PDB-8ua3:
Cryo-EM Structure of FBOX22-BACH1BTB
Method: single particle / : Shi H, Cao S, Zheng N

PDB-8ua6:
Cryo-EM Structure of SCF-FBOX22-BACH1BTB
Method: single particle / : Shi H, Cao S, Zheng N

PDB-8uah:
Structure of BACH1 BTB domain-bound FBXL17 ubiquitin ligase
Method: single particle / : Shi H, Cao S, Zheng N

PDB-8ubt:
Structure of SCF-FBXL17-BACH1BTB E3 ligase complex
Method: single particle / : Shi H, Cao S

PDB-8ubu:
Cryo-EM structure of dimeric SCF-FBXL17-BACH1BTB E3 ligase complex close conformation
Method: single particle / : Shi H, Cao S, Zheng N

PDB-8ubv:
Cryo-EM structure of dimeric FBXL17-BACH1BTB E3 ubiquitin ligase complex
Method: single particle / : Shi H, Cao S, Zheng N

EMDB-38892:
The self-assembled nanotube of CPC46A/Q70C
Method: helical / : Yang M, Rao G, Li L, Qi L, Ma C, Zhang H, Gong J, Wei B, Zhang XE, Chen G, Cao S, Li F

EMDB-38898:
The self-assembled nanotube of CPC46A/Q70H
Method: helical / : Yang M, Rao G, Li L, Qi L, Ma C, Zhang H, Gong J, Wei B, Zhang XE, Chen G, Cao S, Li F

EMDB-38900:
The self-assembled nanotube of CPC46A/Q70V
Method: helical / : Yang M, Rao G, Li L, Qi L, Ma C, Zhang H, Gong J, Wei B, Zhang XE, Chen G, Cao S, Li F

PDB-8y3n:
The self-assembled nanotube of CPC46A/Q70C
Method: helical / : Yang M, Rao G, Li L, Qi L, Ma C, Zhang H, Gong J, Wei B, Zhang XE, Chen G, Cao S, Li F

PDB-8y3t:
The self-assembled nanotube of CPC46A/Q70H
Method: helical / : Yang M, Rao G, Li L, Qi L, Ma C, Zhang H, Gong J, Wei B, Zhang XE, Chen G, Cao S, Li F

PDB-8y3v:
The self-assembled nanotube of CPC46A/Q70V
Method: helical / : Yang M, Rao G, Li L, Qi L, Ma C, Zhang H, Gong J, Wei B, Zhang XE, Chen G, Cao S, Li F

EMDB-37918:
Local map of Omicron Subvariants Spike with Antibody
Method: single particle / : Yan RH, Wang AJ

EMDB-37927:
Local map of Omicron Subvariants Spike with ACE2
Method: single particle / : Yan RH, Wang AJ

EMDB-39203:
Cryo EM structure of human phosphate channel XPR1 in complex with IP6
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-39204:
Cryo EM structure of human phosphate channel XPR1 at apo state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-39210:
Cryo EM structure of human phosphate channel XPR1 at open and inward-facing state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-39220:
Cryo EM structure of human phosphate channel XPR1 at open state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-39230:
Cryo EM structure of human phosphate channel XPR1 at intermediate state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-39231:
Cryo EM structure of human phosphate channel XPR1 at intermediate state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-39232:
Cryo EM structure of human phosphate channel XPR1 at inward-facing state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-60962:
Cryo EM structure of human phosphate channel XPR1 in complex with IP7
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yet:
Cryo EM structure of human phosphate channel XPR1 in complex with IP6
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yex:
Cryo EM structure of human phosphate channel XPR1 at apo state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yf4:
Cryo EM structure of human phosphate channel XPR1 at open and inward-facing state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yfd:
Cryo EM structure of human phosphate channel XPR1 at open state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yfu:
Cryo EM structure of human phosphate channel XPR1 at intermediate state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yfw:
Cryo EM structure of human phosphate channel XPR1 at intermediate state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-8yfx:
Cryo EM structure of human phosphate channel XPR1 at inward-facing state
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

PDB-9iws:
Cryo EM structure of human phosphate channel XPR1 in complex with IP7
Method: single particle / : Lu Y, Yue C, Zhang L, Yao D, Yu Y, Cao Y

EMDB-38814:
Complex of FMDV O/18074 and inter-serotype broadly neutralizing antibodies pOA-2
Method: single particle / : Wu S, Lei D

EMDB-38815:
Complex of FMDV A/WH/CHA/09 and inter-serotype broadly neutralizing antibodies pOA-2
Method: single particle / : Wu S, Lei D

EMDB-60394:
GerQ filaments from Bacillus amyloiquefaciens
Method: helical / : Kreutzberger M, Egelman E, Cao Q

PDB-8zra:
GerQ filaments from Bacillus amyloiquefaciens
Method: helical / : Kreutzberger M, Egelman E, Cao Q

EMDB-18663:
Cryo-EM structure of the heat-irreversible amyloid fibrils of human lysozyme
Method: helical / : Frey L, Greenwald J, Riek R

EMDB-18669:
Cryo-EM structure of the heat-irreversible amyloid fibrils of hen egg-white lysozyme
Method: helical / : Frey L, Greenwald J, Riek R

PDB-8qut:
Cryo-EM structure of the heat-irreversible amyloid fibrils of human lysozyme
Method: helical / : Frey L, Greenwald J, Riek R

PDB-8qv8:
Cryo-EM structure of the heat-irreversible amyloid fibrils of hen egg-white lysozyme
Method: helical / : Frey L, Greenwald J, Riek R

EMDB-36762:
Human collagen prolyl processing enzyme complex, P3H1/CRTAP heterodimer
Method: single particle / : Li W, Peng J, Yao D, Rao B, Xia Y, Wang Q, Li S, Cao M, Shen Y, Ma P, Liao R, Qin A, Zhao J, Cao Y

EMDB-36763:
Human collagen prolyl processing enzyme complex, P3H1/CRTAP/PPIB heterotrimer, in its apo state
Method: single particle / : Li W, Peng J, Yao D, Rao B, Xia Y, Wang Q, Li S, Cao M, Shen Y, Ma P, Liao R, Qin A, Zhao J, Cao Y

EMDB-36765:
Human collagen prolyl processing enzyme complex, P3H1/CRTAP/PPIB heterotrimer, in its dual-ternary state
Method: single particle / : Li W, Peng J, Yao D, Rao B, Xia Y, Wang Q, Li S, Cao M, Shen Y, Ma P, Liao R, Qin A, Zhao J, Cao Y

EMDB-36774:
Human collagen prolyl processing enzyme complex, P3H1/CRTAP/PPIB heterotrimer, bound to 2-oxoglutarate
Method: single particle / : Li W, Peng J, Yao D, Rao B, Xia Y, Wang Q, Li S, Cao M, Shen Y, Ma P, Liao R, Qin A, Zhao J, Cao Y

EMDB-36787:
Human collagen prolyl processing enzyme complex, P3H1/CRTAP/PPIB heterotrimer, bound to collagen alpha-1(I) chain
Method: single particle / : Li W, Peng J, Yao D, Rao B, Xia Y, Wang Q, Li S, Cao M, Shen Y, Ma P, Liao R, Qin A, Zhao J, Cao Y

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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

  • Version 3 of the EMDB header file is now the official format.
  • 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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