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Showing 1 - 50 of 180 items for (author: efremov & r)

EMDB-52346:
Cryo-EM structure of mouse TMEM16F-YFP purified and plunged using MISO (microfluidic isolation)
Method: single particle / : De Gieter S, Eluru G, Schenck S, Stroobants A, Efremov RG, Brunner JD

PDB-9hqp:
Cryo-EM structure of mouse TMEM16F-YFP purified and plunged using MISO (microfluidic isolation)
Method: single particle / : De Gieter S, Eluru G, Schenck S, Stroobants A, Efremov RG, Brunner JD

EMDB-49646:
Magnesium ions-bound closed-state cryo-EM structure of human TRPV6 in cNW11 nanodiscs
Method: single particle / : Neuberger A, Sobolevsky AI

PDB-9nq9:
Magnesium ions-bound closed-state cryo-EM structure of human TRPV6 in cNW11 nanodiscs
Method: single particle / : Neuberger A, Sobolevsky AI

EMDB-52333:
E. coli beta-galactosidase labeled with Chromeo P503 dye purified using MISO
Method: single particle / : Eluru G, De Gieter S, Stroobants A, Efremov RG

EMDB-52334:
E. coli beta-galactosidase labeled with Chromeo P503 dye purified using MISO from 1ug
Method: single particle / : Eluru G, De Gieter S, Stroobants A, Efremov RG

EMDB-52344:
Cryo-EM structure of bovine TMEM206
Method: single particle / : Brunner JD, Schenck S, De Gieter S

EMDB-52345:
Cryo-EM structure of bovine TMEM206-YFP purified and plunged using MISO (micro-purification)
Method: single particle / : De Gieter S, Eluru G, Schenck S, Stroobants A, Efremov RG, Brunner JD

EMDB-52486:
Cryo-EM structure of TRPC6 (complete particle) purified and plunged using MISO (micro-purification)
Method: single particle / : De Gieter S, Eluru G, Stroobants A, Shrestha B, Erbel P, Efremov RG

EMDB-52487:
Cryo-EM structure of TRPC6 (extra cellular domain) purified and plunged using MISO (micro-purification)
Method: single particle / : De Gieter S, Eluru G, Stroobants A, Shrestha B, Erbel P, Efremov RG

PDB-9hpl:
E. coli beta-galactosidase labeled with Chromeo P503 dye purified using MISO
Method: single particle / : Eluru G, De Gieter S, Stroobants A, Efremov RG

PDB-9hpm:
E. coli beta-galactosidase labeled with Chromeo P503 dye purified using MISO from 1ug
Method: single particle / : Eluru G, De Gieter S, Stroobants A, Efremov RG

PDB-9hqn:
Cryo-EM structure of bovine TMEM206
Method: single particle / : Brunner JD, Schenck S, De Gieter S

PDB-9hqo:
Cryo-EM structure of bovine TMEM206-YFP purified and plunged using MISO (micro-purification)
Method: single particle / : De Gieter S, Eluru G, Schenck S, Stroobants A, Efremov RG, Brunner JD

EMDB-52083:
Ryanodine receptor1 incomplx with FBKP12 and Nanobody9657
Method: single particle / : Li C, Efremov RG

EMDB-52092:
Primed state Ryanodine receptor1 in 0.01% POPC micelles in complex with FKBP12 and Nanobody9657
Method: single particle / : Li C, Efremov RG

EMDB-53924:
Primed-state RyR1 in 0.01% POPC micelles, in complex with a nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

PDB-9rcw:
Primed-state RyR1 in 0.01% POPC micelles, in complex with a nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-52089:
Open-state RyR1 in 0.01% POPC micelles, in complex with a nanobody and FKBP
Method: single particle / : Li C, Efremov RG

EMDB-52091:
Open-state RyR1 in 0.01% POPC micelles, in complex with a nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

PDB-9heq:
Open-state RyR1 in 0.01% POPC micelles, in complex with a nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-52093:
Transmembrnae domian of ryanodine receptor1
Method: single particle / : Li C, Efremov RG

EMDB-52084:
Transmembrane part of ryanodine receptor1
Method: single particle / : Li C, Efremov RG

EMDB-52085:
Open-state RyR1 in 0.05% POPC micelles, in complex with a nanobody and FKBP
Method: single particle / : Li C, Efremov RG

EMDB-52086:
Primed-state RyR1 in 0.05% POPC micelles, in complex with a nanobody and FKBP
Method: single particle / : Li C, Efremov RG

EMDB-52087:
Transmenbrane domian of ryanodine receptor1
Method: single particle / : Li C, Efremov RG

EMDB-52090:
transmembrane domain of ryanodine receptor1
Method: single particle / : Li C, Efremov RG

EMDB-53834:
Primed-state RyR1 in 0.05% POPC micelles, in complex with a nanobody and FKBP
Method: single particle / : Li C, Efremov RG

PDB-9heo:
Open-state RyR1 in 0.05% POPC micelles, in complex with a nanobody and FKBP
Method: single particle / : Li C, Efremov RG

PDB-9r8o:
Primed-state RyR1 in 0.05% POPC micelles, in complex with a nanobody and FKBP
Method: single particle / : Li C, Efremov RG

EMDB-19504:
RyR1 in detergent in close state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19505:
TM part of RyR1 in detergent in close state
Method: single particle / : Li C, Efremov RG

EMDB-19506:
Tm part of RyR1 reconstituted into liposome in primed state
Method: single particle / : Li C, Efremov RG

EMDB-19507:
TM part of RyR1 in detergent in open state
Method: single particle / : Li C, Efremov RG

EMDB-19508:
RyR1 reconstituted into liposome in open state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19509:
open state RyR2 in detergent in complex with nanobody
Method: single particle / : Li C, Efremov RG

EMDB-19510:
TM part of RyR1 reconstituted in liposome in open state
Method: single particle / : Li C, Efremov RG

EMDB-19511:
TM part of RyR2 in detergent in open state
Method: single particle / : Li C, Efremov RG

EMDB-19512:
RyR1 in reconstitute in liposome in primed state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19486:
Structure of RyR1 in lipid nanodisc in primed state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19487:
Structure of RyR1 reconstituted into lipid nanodisc in primed state in complex with Ca2+, ATP, caffeine and Nb9657
Method: single particle / : Li C, Efremov RG

EMDB-19498:
Structure of RyR1 in detergent in primed state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19500:
transmembrane part of RyR1
Method: single particle / : Li C, Efremov RG

EMDB-19502:
structure of RyR1 in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-45933:
Structure of human full-length ancestral TRPV6 channel in apo open state
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI

EMDB-45934:
Structure of human full-length ancestral TRPV6 channel in Calmodulin-bound state
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI

EMDB-45935:
Structure of human full-length derived TRPV6 channel in apo open state
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI

EMDB-45936:
Structure of human full-length derived TRPV6 channel in Calmodulin-bound state
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI

PDB-9cuh:
Structure of human full-length ancestral TRPV6 channel in apo open state
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI

PDB-9cui:
Structure of human full-length ancestral TRPV6 channel in Calmodulin-bound state
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI

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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

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