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Showing 1 - 50 of 16,250 items for (author: yan & c)

EMDB-73147:
Constituent EM map: Focused refinement on NTD+SPRY+Calstabin-1 of mouse RyR1 (including auxiliary transmembrane helix TMx; EGTA-only dataset)
Method: single particle / : Weninger G, Marks AR

EMDB-73148:
Constituent EM map: Focused refinement on JSol+CSol of mouse RyR1 (including auxiliary transmembrane helix TMx; EGTA-only dataset)
Method: single particle / : Weninger G, Marks AR

EMDB-73149:
Constituent EM map: Focused refinement on BSol of mouse RyR1 (including auxiliary transmembrane helix TMx; EGTA-only dataset)
Method: single particle / : Weninger G, Marks AR

EMDB-73151:
Constituent EM map: Focused refinement on Ry12 of mouse RyR1 (including auxiliary transmembrane helix TMx; EGTA-only dataset)
Method: single particle / : Weninger G, Marks AR

EMDB-73152:
Constituent EM map: Focused refinement on Ry34 of mouse RyR1 (including auxiliary transmembrane helix TMx; EGTA-only dataset)
Method: single particle / : Weninger G, Marks AR

EMDB-73154:
Constituent EM map: Focused refinement on NTD+SPRY+Calstabin-1 of mouse RyR1 (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73155:
Constituent EM map: Focused refinement on JSol+CSol of mouse RyR1 (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73156:
Constituent EM map: Focused refinement on BSol of mouse RyR1 (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73157:
Constituent EM map: Focused refinement on Ry12 of mouse RyR1 (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73158:
Constituent EM map: Focused refinement on Ry34 of mouse RyR1 (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73159:
Constituent EM map: Focused refinement on NTD+SPRY+Calstabin-1 of mouse RyR1 (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73160:
Constituent EM map: Focused refinement on JSol+CSol of mouse RyR1 (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73161:
Constituent EM map: Focused refinement on BSol of mouse RyR1 (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73162:
Constituent EM map: Focused refinement on Ry12 of mouse RyR1 (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73163:
Constituent EM map: Focused refinement on Ry34 of mouse RyR1 (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73164:
Constituent EM map: Focused refinement on NTD+SPRY+Calstabin-1 of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73165:
Constituent EM map: Focused refinement on JSol+CSol of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73166:
Constituent EM map: Focused refinement on BSol of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73167:
Constituent EM map: Focused refinement on Ry12 of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73169:
Constituent EM map: Focused refinement on Ry34 of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; open pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73170:
Constituent EM map: Focused refinement on NTD+SPRY+Calstabin-1 of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73171:
Constituent EM map: Focused refinement on JSol+CSol of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73172:
Constituent EM map: Focused refinement on BSol of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73177:
Constituent EM map: Focused refinement on Ry12 of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-73180:
Constituent EM map: Focused refinement on Ry34 of mouse RyR1 with simvastatin (Ca2+/CFF/ATP dataset; closed pore)
Method: single particle / : Weninger G, Marks AR

EMDB-54556:
Cerebellar GluA1/4 LBD tetramer (focused refinement)
Method: single particle / : Sengupta N, Scrutton A, Greger IH, Krieger JM

PDB-9s3z:
Cerebellar GluA1/4 LBD tetramer (focused refinement)
Method: single particle / : Sengupta N, Scrutton A, Greger IH, Krieger JM

EMDB-73297:
GTPBP1*GCP*Phe-tRNA*ribosome in the GTPase activation-like state, Structure III
Method: single particle / : Susorov D, Korostelev AA

EMDB-73311:
GTPBP1*GDP*Phe-tRNA*ribosome in the post-GTP hydrolysis state, Structure IV
Method: single particle / : Susorov D, Korostelev AA

PDB-9ypg:
GTPBP1*GCP*Phe-tRNA*ribosome in the GTPase activation-like state, Structure III
Method: single particle / : Susorov D, Korostelev AA

PDB-9ypw:
GTPBP1*GDP*Phe-tRNA*ribosome in the post-GTP hydrolysis state, Structure IV
Method: single particle / : Susorov D, Korostelev AA

EMDB-65064:
cryoEM structure of retron-Eco7 complex
Method: single particle / : Dai ZK, Wang YJ, Guan ZY, Zou TT

PDB-9vhe:
cryoEM structure of retron-Eco7 complex
Method: single particle / : Dai ZK, Wang YJ, Guan ZY, Zou TT

EMDB-63452:
Cryo-EM structure of the cytosolic ARMH2-EFCAB9-CATSPERz subcomplex of the mouse CatSpermasome
Method: single particle / : Zhao Q, Lin S, Xu Q, Wu J

PDB-9lwo:
Cryo-EM structure of the cytosolic ARMH2-EFCAB9-CATSPERz subcomplex of the mouse CatSpermasome
Method: single particle / : Zhao Q, Lin S, Xu Q, Wu J

EMDB-65225:
Cryo-EM Structure of Human GPR158 Bound to Nanobody Nb20
Method: single particle / : Laboute T, Zucca S, Sial M, Sharma M, Brunori G, Singh S, Singh A, Martemyanov K

PDB-9vor:
Cryo-EM Structure of Human GPR158 Bound to Nanobody Nb20
Method: single particle / : Laboute T, Zucca S, Sial M, Sharma M, Brunori G, Singh S, Singh A, Martemyanov K

EMDB-48795:
Subtomogram averaging of HTLV-1 Gag capsid from immature particles
Method: subtomogram averaging / : Arndt WG, Zhang W, Mansky LM

EMDB-48796:
HTLV-1 Gag capsid from immature particles
Method: single particle / : Arndt WG, Zhang W, Mansky LM

PDB-9n0w:
HTLV-1 Gag capsid from immature particles
Method: single particle / : Arndt WG, Ramezani A, Chen B, Perilla JR, Zhang W, Mansky LM

PDB-9n92:
High-resolution analysis of the human T-cell leukemia virus capsid protein reveals insights into immature particle morphology
Method: single particle / : Arndt WG, Ramezani A, Talledge N, Yu G, Yang H, Chen B, Zhang W, Mansky LM, Perilla JR

EMDB-70760:
Human pannexin 1 channel with 0 mM ATP
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70761:
Human pannexin 1 channel with 10 mM ATP
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70762:
Human pannexin 1 channel with 20 mM ATP
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70763:
Human pannexin 1 channel with 30 mM ATP
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70764:
Human pannexin 1 channel from combined 0, 10, 20, 30 mM ATP datasets
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70765:
Putative ATP-bound class from combined 10, 20, 30 mM ATP datasets
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70766:
Apo class from combined 0, 10, 20, 30 mM ATP datastes
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70767:
Constricted-pore class from combined 0, 10, 20, 30 mM ATP datasets
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

EMDB-70768:
Dilated-pore class from combined 0, 10, 20, 30 mM ATP datasets
Method: single particle / : Ruan Z, Li Y, Du J, Lu W

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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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