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Showing 1 - 50 of 69 items for (author: efremov & rg)
EMDB-17112:
Structure of apo form of human gamma-secretase PSEN1 APH-1B isoform reconstituted into lipid nanodisc
Method: single particle / : Odorcic I, Chavez Gutierrez L, Efremov RG
EMDB-17113:
Structure of human gamma-secretase PSEN1 APH-1B isoform reconstituted into lipid nanodisc in complex with Ab46
Method: single particle / : Odorcic I, Chavez Gutierrez L, Efremov RG
EMDB-16157:
Map of GroEL:GroES-(ADP) complex plunge frozen 200 ms after reaction initiation with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-40676:
Human TRP channel TRPV6 in cNW30 nanodiscs inhibited by tetrahydrocannabivarin (THCV)
Method: single particle / : Neuberger A, Yelshanskaya MV, Nadezhdin KD, Sobolevsky AI
PDB-8sp8:
Human TRP channel TRPV6 in cNW30 nanodiscs inhibited by tetrahydrocannabivarin (THCV)
Method: single particle / : Neuberger A, Yelshanskaya MV, Nadezhdin KD, Sobolevsky AI
EMDB-16091:
Cryo-EM structure of beta-galactosidase at 3.3 A resolution plunged 5 ms after mixing with apoferritin
Method: single particle / : Torino S, Dhurandhar M, Efremov R
EMDB-16092:
Cryo-EM structure of beta-galactosidase at 2.9 A resolution plunged 205 ms after mixing with apoferritin
Method: single particle / : Torino S, Dhurandhar M, Efremov R
EMDB-16093:
Cryo-EM structure of mouse heavy-chain apoferritin at 2.1 A plunged 5ms after mixing with b-galactosidase
Method: single particle / : Torino S, Dhurandhar M, Efremov R
EMDB-16094:
Cryo-EM structure of mouse heavy-chain apoferritin at 2.7 A plunged 35ms after mixing with b-galactosidase
Method: single particle / : Torino S, Dhurandhar M, Efremov R
EMDB-16095:
Cryo-EM structure of mouse heavy-chain apoferritin at 2.2 A plunged 205ms after mixing with b-galactosidase
Method: single particle / : Torino S, Dhurandhar M, Efremov R
EMDB-16097:
Cryo-EM structure of beta-galactosidase at 3.2 A resolution plunged 35 ms after mixing with apoferritin
Method: single particle / : Torino S, Dhurandhar M, Efremov R
EMDB-16099:
GroEL:GroES-ATP complex under continuous turnover condirions
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16100:
Structure of GroEL-ATP complex plunge frozen 200 ms after reaction initiation
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16102:
Structure of GroEL-nucleotide complex in ADP-like conformation plunged 13 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16106:
Structure of the GroEL-ATP complex plunge-frozen 50 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16107:
Structure of the GroEL(ATP7/ADP7) complex plunged 13 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16108:
Structure of GroEL-nucleotide complex in ADP-like conformation plunged 50 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16109:
Structure of the GroEL(ATP7/ADP7) complex plunged 50 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16115:
Structure of the GroEL-ATP complex plunge-frozen 13 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16116:
Structure of GroEL:GroES-ATP complex plunge frozen 200 ms after reaction initiation
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16117:
Structure of GroEL:GroES-ATP complex under continuous turnover conditions
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16118:
Structure of GroEL-ATP complex under continuous turnover conditions
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16119:
Structure of GroEL:GroES complex exhibiting ADP-conformation in trans ring obtained under the continuous turnover conditions
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16125:
Structure of GroEL:GroES-ATP complex plunge frozen 200 ms after reaction initiation
Method: single particle / : Dhurandhar M, Efremov R, Torino S
EMDB-16154:
Map of the GroEL-ES-ATP complex plunge-frozen 50 ms after mixing with ATP
Method: single particle / : Dhurandhar M, Torino S, Efremov R
EMDB-16308:
Alvinella pompejana nicotinic acetylcholine receptor Alpo4 in apo state (dataset 1)
Method: single particle / : De Gieter S, Efremov RG, Ulens C
EMDB-16314:
Alvinella pompejana nicotinic acetylcholine receptor Alpo in apo state (dataset 2)
Method: single particle / : De Gieter S, Efremov RG, Ulens C
EMDB-16315:
Alvinella pompejana nicotinic acetylcholine receptor Alpo4 in apo state (Alpo4_LMNG_Serotonin dataset 4)
Method: single particle / : De Gieter S, Efremov RG, Ulens C
EMDB-16316:
Alvinella pompejana nicotinic acetylcholine receptor Alpo4 in apo state (Alpo4_comb dataset 3)
Method: single particle / : De Gieter S, Efremov RG, Ulens C
EMDB-16317:
Alvinella pompejana nicotinic acetylcholine receptor Alpo4 in apo state (Alpo4_apo, dataset 1)
Method: single particle / : De Gieter S, Efremov RG, Ulens C
EMDB-16326:
Alvinella pompejana nicotinic acetylcholine receptor Alpo4 in complex with CHAPS(Alpo4_CHAPS)
Method: single particle / : De Gieter S, Efremov RG, Ulens C
EMDB-29343:
Cryo-EM structure of human TRPV6 in complex with the natural phytoestrogen genistein
Method: single particle / : Neuberger A, Yelshanskaya MV, Nadezhdin KD, Sobolevsky AI
EMDB-29344:
Cryo-EM structure of human TRPV6 in the open state
Method: single particle / : Neuberger A, Yelshanskaya MV, Nadezhdin KD, Sobolevsky AI
PDB-8foa:
Cryo-EM structure of human TRPV6 in complex with the natural phytoestrogen genistein
Method: single particle / : Neuberger A, Yelshanskaya MV, Nadezhdin KD, Sobolevsky AI
PDB-8fob:
Cryo-EM structure of human TRPV6 in the open state
Method: single particle / : Neuberger A, Yelshanskaya MV, Nadezhdin KD, Sobolevsky AI
EMDB-15213:
Cryo-EM density map of Tn4430 TnpA hyperactive mutant (TnpA3X) in complex with IR48 substrate.
Method: single particle / : Shkumatov AV, Liu Y, Efremov RG
EMDB-15218:
Medium resolution cryo-EM density map of Tn4430 TnpA transposase from Tn3 family in apo state
Method: single particle / : Shkumatov AV, Liu Y, Efremov RG
EMDB-13906:
Cryo-EM structure of Tn4430 TnpA transposase from Tn3 family in complex with 100 bp long transposon end DNA
Method: single particle / : Shkumatov AV, Oger CA, Aryanpour N, Hallet BF, Efremov RG
EMDB-13908:
Cryo-EM structure of Tn4430 TnpA transposase from Tn3 family in complex with 48 bp long transposon end DNA
Method: single particle / : Shkumatov AV, Oger CA, Aryanpour N, Hallet BF, Efremov RG
EMDB-13909:
Cryo-EM structure of Tn4430 TnpA transposase from Tn3 family in complex with strand-transfer like DNA product
Method: single particle / : Shkumatov AV, Oger CA, Aryanpour N, Hallet BF, Efremov RG
EMDB-13910:
Cryo-EM structure of Tn4430 TnpA transposase from Tn3 family in apo state
Method: single particle / : Shkumatov AV, Oger CA, Aryanpour N, Hallet BF, Efremov RG
EMDB-12653:
Respiratory complex I from Escherichia coli - conformation 1
Method: single particle / : Kolata P, Efremov RG
EMDB-12654:
Respiratory complex I from Escherichia coli - conformation 2
Method: single particle / : Kolata P, Efremov RG
EMDB-12655:
Respiratory complex I from Escherichia coli - conformation 3
Method: single particle / : Kolata P, Efremov RG
EMDB-13291:
Respiratory complex I from Escherichia coli solubilized in LMNG
Method: single particle / : Kolata P, Efremov RG
EMDB-12652:
Respiratory complex I from Escherichia coli - focused refinement of membrane arm
Method: single particle / : Kolata P, Efremov RG
EMDB-12661:
Respiratory complex I from Escherichia coli - focused refinement of cytoplasmic arm
Method: single particle / : Kolata P, Efremov RG
EMDB-23853:
Mouse TRPV3 in MSP2N2 nanodiscs, closed state at 4 degrees Celsius
Method: single particle / : Neuberger A, Nadezhdin KD, Sobolevsky AI
EMDB-23854:
Mouse TRPV3 in MSP2N2 nanodiscs, closed state at 42 degrees Celsius
Method: single particle / : Nadezhdin KD, Neuberger A, Sobolevsky AI
EMDB-23855:
Mouse TRPV3 in MSP2N2 nanodiscs, sensitized state at 42 degrees Celsius
Method: single particle / : Nadezhdin KD, Neuberger A, Sobolevsky AI
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