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Showing 1 - 50 of 5,862 items for (author: jun & sh)

EMDB-73688:
Cryo-EM structure of VVD-908 NLRP3 complex
Method: single particle / : Bernard SM

PDB-9z03:
Cryo-EM structure of VVD-908 NLRP3 complex
Method: single particle / : Bernard SM

EMDB-68781:
In situ cryo sub-tomogram average of axoneme in sperm flagella from Rgs22 knockout mice
Method: subtomogram averaging / : Ye-Jun P

EMDB-54707:
Structure of Yeast RNA polymerase II elongation complex apo-state-II
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

PDB-9saz:
Structure of Yeast RNA polymerase II elongation complex apo-state-II
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

EMDB-72202:
CryoEM structure of beta2-adrenergic receptor dimer mediated by a biased allosteric modulator in lipid nanodisc
Method: single particle / : Shen J, Kobilka BK

EMDB-66278:
Human TOM-TIM22 supercomplex with substrate GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

EMDB-66279:
Human TIM22 complex wtih substrate GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

EMDB-66280:
Human TOM complex with substrate GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

EMDB-66281:
Human TOM complex with substrate Tim22-GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

PDB-9wv1:
Human TIM22 complex wtih substrate GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

PDB-9wv2:
Human TOM complex with substrate GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

PDB-9wv3:
Human TOM complex with substrate Tim22-GGC1-sfGFP
Method: single particle / : Liu XL, Cai HJ, Li L

EMDB-65877:
AMP-PNP bound E.coli CnoX-GroEL complex, state I
Method: single particle / : Kim J, Roh SH

EMDB-65953:
AMP-PNP bound E.coli CnoX-GroEL complex, state I without symmetry
Method: single particle / : Kim J, Roh SH

EMDB-65990:
AMP-PNP bound E.coli CnoX-GroEL complex, state II
Method: single particle / : Kim J, Roh SH

EMDB-65991:
AMP-PNP bound E.coli CnoX-GroEL/ES complex, state IV
Method: single particle / : Kim J, Roh SH

EMDB-65992:
AMP-PNP bound E.coli CnoX-GroEL/ES complex, state III
Method: single particle / : Kim J, Roh SH

EMDB-73392:
Cryo-EM structure of SARS-CoV-2 Omicron neutralizing antibody AB2-122 with BA.5 RBD and SP1-77 Fab complex
Method: single particle / : Jonaid G, Batra H, Kibria G, Chen B, Alt FW

EMDB-73457:
Cryo-EM structure of SARS-CoV-2 Omicron neutralizing antibody S212 with BA.5 RBD and SP1-77 Fab complex
Method: single particle / : Batra H, Zhang J, Jonaid G, Kibria G, Chen B, Alt FW

PDB-9ysg:
Cryo-EM structure of SARS-CoV-2 Omicron neutralizing antibody AB2-122 with BA.5 RBD and SP1-77 Fab complex
Method: single particle / : Jonaid G, Batra H, Kibria G, Chen B, Alt FW

PDB-9ytc:
Cryo-EM structure of SARS-CoV-2 Omicron neutralizing antibody S212 with BA.5 RBD and SP1-77 Fab complex
Method: single particle / : Batra H, Zhang J, Jonaid G, Kibria G, Chen B, Alt FW

EMDB-55929:
Structure of human CLN8 in an apo-state
Method: single particle / : Lacabanne D, Sheokand PK, Ruprecht JJ, Petkevicius K

EMDB-56021:
Structure of human CLN8 in the presence of docosahexaenoate
Method: single particle / : Lacabanne D, Sheokand PK, Ruprecht JJ, Petkevicius K

EMDB-56022:
Structure of human CLN8 in the presence of oleate
Method: single particle / : Lacabanne D, Sheokand PK, Ruprecht JJ, Petkevicius K

EMDB-66504:
Phage T4 neck in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66505:
Phage T4 sheath in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66506:
Phage T4 inner baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66507:
Phage T4 peripheral baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66508:
Phage T4 tip of the tail tube in post-tail-contraction state (genome-empty particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66675:
Phage T4 protruding part of the tail tube in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3o:
Phage T4 neck in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3p:
Phage T4 sheath in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3q:
Phage T4 inner baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3r:
Phage T4 peripheral baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3s:
Phage T4 tip of the tail tube in post-tail-contraction state (genome-empty particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9xa3:
Phage T4 protruding part of the tail tube in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-68782:
In situ cryo sub-tomogram average of the ciliary axoneme from Rgs22 knockout mouse ependymal progenitor cells
Method: subtomogram averaging / : Ye-Jun P

EMDB-76165:
Nipah virus fusion protein with 20G7 antibody fab
Method: single particle / : May AJ, Liu K, Acharya P

EMDB-76168:
Nipah virus fusion protein ectodomain in complex with 8C7 antibody fab
Method: single particle / : May AJ, Liu K, Acharya P

EMDB-76170:
Hendra virus fusion protein ectodomain in complex with 9A9 antibody fab
Method: single particle / : May AJ, Liu K, Acharya P

EMDB-54704:
Structure of Yeast RNA polymerase II elongation complex apo-state-I
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

EMDB-54705:
CryoEM map of Yeast RNA polymerase II elongation complex apo-state-I-A
Method: single particle / : Yi G, Li Q, Wang D, Zhang P

EMDB-54706:
CryoEM map of Yeast RNA polymerase II elongation complex apo-state-I-B
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

EMDB-54709:
Structure of Yeast RNA polymerase II elongation complex with NTP-state-VII-A
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

EMDB-54711:
Structure of Yeast RNA polymerase II elongation complex with NTP-state-VII-C
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

PDB-9say:
Structure of Yeast RNA polymerase II elongation complex apo-state-I
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

PDB-9sb1:
Structure of Yeast RNA polymerase II elongation complex with NTP-state-VII-A
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

PDB-9sb3:
Structure of Yeast RNA polymerase II elongation complex with NTP-state-VII-C
Method: single particle / : Yi G, Li Q, Zhang P, Wang D

EMDB-76879:
Subtomogram averaging of vancomycin-resistant Enterococcus faecium (delSagA)
Method: subtomogram averaging / : Park D

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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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