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Showing 1 - 50 of 226 items for (author: kirill & m)


EMDB Unreleased entry

EMDB-56861:
In situ ribosome from HeLa cells
Method: subtomogram averaging / : Gemin O, Babenko A, Papp G


EMDB Unreleased entry

EMDB-77136:
Structure of human TRPV3-Q580P Olmsted syndrome mutant in the closed state
Method: single particle / : Khau J, Nadezhdin KD, Purohit R, Sobolevsky AI

PDB-13ll:
Structure of human TRPV3-Q580P Olmsted syndrome mutant in the closed state
Method: single particle / : Khau J, Nadezhdin KD, Purohit R, Sobolevsky AI

EMDB-71680:
Closed-state structure of wild-type human TRPV3 purified in GDN detergent
Method: single particle / : Purohit R, Khau J, Nadezhdin KD, Sobolevsky AI

EMDB-71681:
Inactivated-state structure of wild-type human TRPV3 purified in GDN detergent
Method: single particle / : Purohit R, Khau J, Nadezhdin KD, Sobolevsky AI

EMDB-77134:
Structure of human TRPV3-G568C Olmsted syndrome mutant in the closed state
Method: single particle / : Khau J, Purohit R, Nadezhdin KD, Sobolevsky AI

EMDB-77135:
Structure of human TRPV3-G568C Olmsted syndrome mutant in the open state
Method: single particle / : Khau J, Purohit R, Nadezhdin KD, Sobolevsky AI

EMDB-77137:
Structure of human TRPV3-Q580P Olmsted syndrome mutant in the open state
Method: single particle / : Khau J, Purohit R, Nadezhdin KD, Sobolevsky AI

EMDB-77138:
Structure of human TRPV3-Q580P Olmsted syndrome mutant in the inactivated state
Method: single particle / : Purohit R, Khau J, Nadezhdin KD, Sobolevsky AI

EMDB-77139:
Structure of human TRPV3-W692G Olmsted syndrome mutant in the open state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

EMDB-77140:
Structure of human TRPV3-W692G Olmsted syndrome mutant in the inactivated state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

EMDB-77141:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 4-fold symmetrical open state
Method: single particle / : Nadezhdin KD, Purohit R, Khau J, Sobolevsky AI

EMDB-77142:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 4-fold symmetrical inactivated state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

EMDB-77143:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 2-fold symmetrical closed state
Method: single particle / : Nadezhdin KD, Purohit R, Khau J, Sobolevsky AI

EMDB-77144:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 2-fold symmetrical open state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

EMDB-77145:
Structure of human TRPV3-W521S Olmsted syndrome mutant in the closed state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

PDB-13lj:
Structure of human TRPV3-G568C Olmsted syndrome mutant in the closed state
Method: single particle / : Khau J, Purohit R, Nadezhdin KD, Sobolevsky AI

PDB-13lk:
Structure of human TRPV3-G568C Olmsted syndrome mutant in the open state
Method: single particle / : Khau J, Purohit R, Nadezhdin KD, Sobolevsky AI

PDB-13lm:
Structure of human TRPV3-Q580P Olmsted syndrome mutant in the open state
Method: single particle / : Khau J, Purohit R, Nadezhdin KD, Sobolevsky AI

PDB-13ln:
Structure of human TRPV3-Q580P Olmsted syndrome mutant in the inactivated state
Method: single particle / : Purohit R, Khau J, Nadezhdin KD, Sobolevsky AI

PDB-13lo:
Structure of human TRPV3-W692G Olmsted syndrome mutant in the open state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

PDB-13lp:
Structure of human TRPV3-W692G Olmsted syndrome mutant in the inactivated state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

PDB-13lq:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 4-fold symmetrical open state
Method: single particle / : Nadezhdin KD, Purohit R, Khau J, Sobolevsky AI

PDB-13lr:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 4-fold symmetrical inactivated state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

PDB-13ls:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 2-fold symmetrical closed state
Method: single particle / : Nadezhdin KD, Purohit R, Khau J, Sobolevsky AI

PDB-13lt:
Structure of human TRPV3-G568D Olmsted syndrome mutant in the 2-fold symmetrical open state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

PDB-13lu:
Structure of human TRPV3-W521S Olmsted syndrome mutant in the closed state
Method: single particle / : Nadezhdin KD, Khau J, Purohit R, Sobolevsky AI

PDB-9pj5:
Closed-state structure of wild-type human TRPV3 purified in GDN detergent
Method: single particle / : Purohit R, Khau J, Nadezhdin KD, Sobolevsky AI

PDB-9pj6:
Inactivated-state structure of wild-type human TRPV3 purified in GDN detergent
Method: single particle / : Purohit R, Khau J, Nadezhdin KD, Sobolevsky AI

EMDB-56607:
CryoEM structure of guanidinase from Nitrospira inopinata
Method: single particle / : Prokhorova I, Lecomte L, Papp G, Schreiner C, Djinovic-Carugo K

EMDB-56821:
C.t. INO80 chromatin remodeler bound to nucleosome
Method: single particle / : Lecomte L, Grozavu DM, Kolesnikova O, Eustermann S

EMDB-56855:
Cryo-EM structure of yeast ribosome solved with EasyGrid
Method: single particle / : Gemin O, Papp G

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-55761:
Cryo-EM map of mouse heavy chain apoferritin
Method: single particle / : Haubner M, Williams HM, Hruby J, Guskov A, Kovalev K, Drabbels M, Lorenz UJ, Straub MS

EMDB-55765:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

EMDB-55766:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the K2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

EMDB-55769:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the O2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

PDB-9tbd:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

PDB-9tbe:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the K2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

PDB-9tbf:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the O2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

EMDB-72062:
Polyclonal immune complex of Fab from mice sera binding the head of H5 HA after immunization with inactivated split A/bald eagle/FL/W22-134-OP/2022 Influenza virus vaccine adjuvanted with CpG
Method: single particle / : Andrade TG, Rodriguez AJ, Han J, Ward AB

EMDB-72063:
Polyclonal immune complex of Fab from mice sera binding the side of the head of H5 HA after immunization with inactivated split A/bald eagle/FL/W22-134-OP/2022 Influenza virus vaccine adjuvanted with CpG
Method: single particle / : Andrade TG, Rodriguez AJ, Han J, Ward AB

EMDB-72064:
Polyclonal immune complex of Fab from mice sera binding the esterase of H5 HA after immunization with inactivated split A/bald eagle/FL/W22-134-OP/2022 Influenza virus vaccine adjuvanted with CpG
Method: single particle / : Andrade TG, Rodriguez AJ, Han J, Ward AB

EMDB-72065:
Polyclonal immune complex of Fab from mice sera binding the top of N1 NA after immunization with inactivated split A/bald eagle/FL/W22-134-OP/2022 Influenza virus vaccine unadjuvanted
Method: single particle / : Andrade TG, Rodriguez AJ, Han J, Ward AB

EMDB-72066:
Polyclonal immune complex of Fab from mice sera binding the side of N1 NA after immunization with inactivated split A/bald eagle/FL/W22-134-OP/2022 Influenza virus vaccine adjuvanted with CpG
Method: single particle / : Andrade TG, Rodriguez AJ, Han J, Ward AB

EMDB-49659:
Cryo-EM structure of a bacterial prototype ATP-binding cassette transporter MalFGK2.
Method: single particle / : Qian R, Jing W, Vinay I, Shanwen Z, Jeehae S, William GL, Luis MRH, Jong HS, Young AG, IIya L, Kirill M, Baron C, Huan B

EMDB-49901:
Cryo-EM structure of a bacterial prototype ATP-binding cassette transporter MalFGK2.
Method: single particle / : Qian R, Jing W, Vinay I, Shanwen Z, Jeehae S, William GL, Luis MRH, Jong HS, Young AG, IIya L, Kirill M, Baron C, Huan B

PDB-9nqj:
Cryo-EM structure of a bacterial prototype ATP-binding cassette transporter MalFGK2.
Method: single particle / : Qian R, Jing W, Vinay I, Shanwen Z, Jeehae S, William GL, Luis MRH, Jong HS, Young AG, IIya L, Kirill M, Baron C, Huan B

PDB-9nxc:
Cryo-EM structure of a bacterial prototype ATP-binding cassette transporter MalFGK2.
Method: single particle / : Qian R, Jing W, Vinay I, Shanwen Z, Jeehae S, William GL, Luis MRH, Jong HS, Young AG, IIya L, Kirill M, Baron C, Huan B

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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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