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Showing 1 - 50 of 315 items for (author: yu & lj)

EMDB-62662:
Cryo-EM structure of the LH1 complex from Roseiflexus castenholzii
Method: single particle / : Wang L, Yu LJ

EMDB-62663:
Cryo-EM structure of the RC complex from Rhodospirillum rubrum
Method: single particle / : Wang L, Yu LJ

EMDB-63007:
Consensus olfactory receptor consOR6 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63008:
Consensus olfactory receptor consOR6 bound to alpha-hexyl cinnamaldehyde and in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63009:
Consensus olfactory receptor consOR6 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63010:
Consensus olfactory receptor consOR6 in complex with Gs trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63011:
Consensus olfactory receptor bmOR6A2 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63012:
Consensus olfactory receptor bmOR6A2 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-63013:
Consensus olfactory receptor bmOR6A2 in complex with mini-Golf trimeric protein
Method: single particle / : Wang T, Wu LJ, Hua T, Liu ZJ

EMDB-66145:
Cryo-EM structure of the apo-ConsOR5-Gs complex
Method: single particle / : Rong NK, Zhang MH, Yang F, Sun JP

EMDB-63174:
Cryo-EM structure of the receptor of PL45-Olfr110-Gs complex
Method: single particle / : Rong NK, Zhang MH, Yang F, Sun JP

EMDB-63175:
Cryo-EM structure of the receptor of PL45-Olfr110-Gs complex
Method: single particle / : Rong NK, Zhang MH, Yang F, Sun JP

EMDB-63614:
Structure-based discovery of potent agonists of the orphan receptor GPR139
Method: single particle / : Cabezadevaca I, Trapkov B, Shen L, Pezeshki M, Zhang XH, Liu Z, Hauser AS, Carlsson J

PDB-9m42:
Structure-based discovery of potent agonists of the orphan receptor GPR139
Method: single particle / : Cabezadevaca I, Trapkov B, Shen L, Pezeshki M, Zhang XH, Liu Zj, Hauser AS, Carlsson J

EMDB-63365:
Cryo-EM structure of light harvesting complex 2 from Ery. sanguineus
Method: single particle / : Yue XY, Wang GL, Yu LJ

EMDB-63370:
Cryo-EM structure of LH1-RC from Ery. sanguineus
Method: single particle / : Yue XY, Wang GL, Yu LJ

EMDB-63715:
Cryo-EM structure of the human TRPA1 ion channel in complex with crotalphine.
Method: single particle / : Kang MM, Zhang YM, Ding XF, Wang LJ, Sun WY, Jiang H, Chen D, Xu JF, Pang XY

EMDB-63720:
Cryo-EM structure of the human TRPA1 ion channel in ligand-free state.
Method: single particle / : Kang MM, Zhang YM, Ding XF, Wang LJ, Sun WY, Jiang H, Chen D, Xu JF, Pang XY

EMDB-48424:
CGRP Receptor in complex with dC2_050
Method: single particle / : Cao J, Cary BP, Belousoff MJ, Wootten DL

PDB-9mni:
CGRP Receptor in complex with dC2_050
Method: single particle / : Cao J, Cary BP, Belousoff MJ, Wootten DL

EMDB-47340:
De novo calcium channel hexamer, CalC6_3 with DHR extensions
Method: single particle / : Weidle C, Liu Y, Borst AJ

EMDB-47356:
De novo calcium channel heptamer, CalC6_3 with DHR extensions. Off target multimerization state
Method: single particle / : Weidle C, Liu Y, Borst AJ

PDB-9dzw:
De novo calcium channel hexamer, CalC6_3 with DHR extensions
Method: single particle / : Weidle C, Liu Y, Borst AJ

PDB-9e0h:
De novo calcium channel heptamer, CalC6_3 with DHR extensions. Off target multimerization state
Method: single particle / : Weidle C, Liu Y, Borst AJ

EMDB-62581:
Mechanistic insights into the versatile stoichiometry and biased signaling of the apelin receptor-arrestin complex
Method: single particle / : Yue Y, Wu LJ, Xu F

EMDB-62582:
Cryo-EM structure of dimeric APJR and two Beta-arrestins complex with small molecules
Method: single particle / : Yue Y, Wu LJ, Xu F

EMDB-62583:
Cryo-EM structure of dimeric APJR and one Beta-arrestin complex with small molecules
Method: single particle / : Yue Y, Wu LJ, Xu F

EMDB-54548:
Outer genome layer of Chaetoceros lorenzianus DNA virus (ClorDNAV), a CRESS-DNA bacilladnavirus
Method: single particle / : Munke A, Gebhard J

EMDB-54550:
Capsid structure of Chaetoceros lorenzianus DNA virus (ClorDNAV), a CRESS-DNA bacilladnavirus
Method: single particle / : Munke A, Gebhard J

EMDB-61439:
Cryo-EM structure of GPR65 complexed with miniGs in pH6.5
Method: single particle / : Yue XL, Wu LJ, Hua T, Liu ZJ

EMDB-62292:
cryo-EM structure of TRIP12 in complex with K29/48 branched-triUb
Method: single particle / : Ai HS, Wu XW, Liu L

EMDB-64484:
The full-length human sweet taste receptor TAS1R2 and TAS1R3 in the apo state
Method: single particle / : Shi ZJ, Xu WX, Yue XL, Wu LJ, Hua T, Liu ZJ

EMDB-64485:
The VFT domains of human sweet taste receptor TAS1R2 and TAS1R3 in the apo state
Method: single particle / : Shi ZJ, Xu WX, Yue XL, Wu LJ, Hua T, Liu ZJ

EMDB-64486:
The transmembrane domains of human sweet taste receptor TAS1R2 and TAS1R3 in the apo state
Method: single particle / : Shi ZJ, Xu WX, Yue XL, Wu LJ, Hua T, Liu ZJ

EMDB-64487:
The full-length human sweet taste receptor TAS1R2 and TAS1R3 in the sucralose-bound state
Method: single particle / : Shi ZJ, Xu WX, Yue XL, Wu LJ, Hua T, Liu ZJ

EMDB-64488:
The VFT domains of human sweet taste receptor TAS1R2 and TAS1R3 in the sucralose-bound state
Method: single particle / : Shi ZJ, Xu WX, Yue XL, Wu LJ, Hua T, Liu ZJ

EMDB-51514:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 without any binding partner.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

EMDB-51515:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 engaged to MIA40.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

EMDB-51516:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 bound by AK2A.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

PDB-9gqy:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 without any binding partner.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

PDB-9gqz:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 engaged to MIA40.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

PDB-9gr0:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 bound by AK2A.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

EMDB-63714:
Structure of photosynthetic LH1-RC complex the Halophilic Nonsulfur Purple Bacterium, Rhodothalassium salexigens
Method: single particle / : Tani K, Kanno R, Inami M, Ooya T, Matsushita R, Minamino A, Takenaka S, Takaichi S, Purba ER, Hall M, Mochizuki T, Yu LJ, Mizoguchi A, Humbel BM, Madigan MT, Kimura Y, Wang-Otomo ZY

EMDB-64946:
Map including micelle density from the photosynthetic LH1-RC complex of the halophilic nonsulfur purple bacterium Rhodothalassium salexigens
Method: single particle / : Tani K, Kanno R, Inami M, Ooya T, Matsushita R, Inada K, Takenaka S, Takaichi S, Purba ER, Hall M, Mochizuki T, Yu LJ, Mizoguchi A, Humbel BM, Madigan MT, Kimura Y, Wang-Otomo ZY

EMDB-60257:
conformation 1 cryo-EM map of N8_Cullin1/Rbx1/Skp1/Skp2/Cks2/p27 in complex with Extension Probe-Ub2 at a resolution of 8.07 angstrom
Method: single particle / : Ai HS, Liang LJ, Li CT, Zhao FY, Zhang LY, Li JH

EMDB-60258:
conformation 2 cryo-EM map of N8_Cullin1/Rbx1/Skp1/Skp2/Cks2/p27 in complex with Extension Probe-Ub2 at a resolution of 7.64 angstrom
Method: single particle / : Ai HS, Liang LJ, Li CT, Zhao FY, Zhang LY, Li JH

EMDB-60259:
conformation 3 cryo-EM map of N8_Cullin1/Rbx1/Skp1/Skp2/Cks2/p27 in complex with Extension Probe-Ub2 at a resolution of 8.33 angstrom
Method: single particle / : Ai HS, Liang LJ, Li CT, Zhao FY, Zhang LY, Li JH

EMDB-60260:
cryo-EM map of N8_Cullin1/Rbx1/Skp1/Skp2/Cks2/p27 in complex with Extension Probe-Ub4 at a resolution of 7.05 angstrom
Method: single particle / : Ai HS, Liang LJ, Li CT, Zhao FY, Zhang LY, Li JH

EMDB-60261:
Skeleton cryo-EM map of N8_Cullin1/Rbx1/Skp1/Skp2/Cks2/p27 in complex with Extension Probe-Ub4 at a resolution of 4.51 angstrom
Method: single particle / : Ai HS, Liang LJ, Li CT, Zhao FY, Zhang LY, Li JH

EMDB-39927:
Cryo-EM structure of GPR4 complexed with Gs in pH6.0
Method: single particle / : Yue XL, Wu LJ, Hua T, Liu ZJ

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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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