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Showing 1 - 50 of 188 items for (author: frost & m)

EMDB-43349:
CryoEM structure of human S-OPA1 assembled on lipid membrane containing brominated cardiolipin in membrane-adjacent state
Method: helical / : Zuccaro KE, Aydin H

PDB-8vlz:
CryoEM structure of human S-OPA1 assembled on lipid membrane containing brominated cardiolipin in membrane-adjacent state
Method: helical / : Zuccaro KE, Aydin H

PDB-8vm4:
CryoEM structure of human S-OPA1 assembled on lipid membrane containing brominated cardiolipin in membrane-adjacent state
Method: helical / : Zuccaro KE, Aydin H

EMDB-49124:
Consensus reconstruction of the Dp71L-PP1A-eIF2alpha holophosphatase stabilized by G-actin/DNAseI
Method: single particle / : Reineke LC, Dalwadi U, Croll T, Arthur C, Lee DJ, Frost A, Costa-Mattioli M

EMDB-49162:
Focused refinement of G-actin within the Dp71L-PP1A-eIF2alpha-DNAseI-G-actin complex
Method: single particle / : Dalwadi U, Reineke LC, Lee DJ, Arthur C, Croll T, Frost A, Costa-Mattioli M

EMDB-49163:
Focused refinement of the Dp71L-eIF2alpha-PP1A subcomplex within the holo-phosphatase complex.
Method: single particle / : Dalwadi U, Reineke LC, Lee DJ, Arthur C, Croll T, Frost A, Costa-Mattioli M

EMDB-49164:
Focused refinement of DNAseI within the Dp71L-eIF2alpha-PP1A-Gactin-DNAseI holo-phosphatase complex.
Method: single particle / : Dalwadi U, Reineke LC, Lee DJ, Arthur C, Croll T, Frost A, Costa-Mattioli M

EMDB-49223:
Viral protein DP71L in complex with phosphorylated eIF2alpha (NTD) and protein phosphatase 1A (D64A), stabilized by G-actin/DNAseI
Method: single particle / : Reineke LC, Dalwadi U, Croll T, Arthur C, Lee DJ, Frost A, Costa-Mattioli M

PDB-9nb9:
Viral protein DP71L in complex with phosphorylated eIF2alpha (NTD) and protein phosphatase 1A (D64A), stabilized by G-actin/DNAseI
Method: single particle / : Reineke LC, Dalwadi U, Croll T, Arthur C, Lee DJ, Frost A, Costa-Mattioli M

EMDB-42922:
Cellular CHMP1B/IST1 filaments - ClassIa
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42923:
Cellular CHMP1B/IST1 filaments - ClassIb
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42925:
Cellular CHMP1B/IST1 filament - Class Ic
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42926:
Cellular CHMP1B/IST1 filament - Class Id
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42927:
Cellular CHMP1B/IST1 filament - Class II
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42928:
Cellular CHMP1B/IST1 filament - Class III
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42929:
Cellular CHMP1B/IST1 filament - Class IV
Method: helical / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42930:
CHMP1B/IST1 ssRNA bound copolymer
Method: helical / : Talledge N, Laughlin TG, Alian A

EMDB-42931:
CryoEM of ssDNA bound CHMP1B/IST1 copolymer assembly
Method: helical / : Talledge N, Laughlin TG, Alian A

EMDB-42932:
CHMP1B/IST1 dsDNA bound copolymer
Method: helical / : Talledge N, Laughlin TG, Alian A

EMDB-42933:
Focused classification of dsDNA nucleic acid density from in vitro CHMP1B/IST1 copolymer filaments - Class1
Method: single particle / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42934:
Focused classification of dsDNA nucleic acid density from in vitro CHMP1B/IST1 copolymer filaments - Class2
Method: single particle / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42935:
Focused classification of dsDNA nucleic acid density from in vitro CHMP1B/IST1 copolymer filaments - Class4
Method: single particle / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42936:
Focused classification of dsDNA nucleic acid density from in vitro CHMP1B/IST1 copolymer filaments - Class5
Method: single particle / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-42937:
Focused classification of dsDNA nucleic acid density from in vitro CHMP1B/IST1 copolymer filaments - Class9
Method: single particle / : Talledge N, Laughlin TG, Alian A, McCullough J

EMDB-40940:
TRPV1 in Nanodisc bound with lysophosphatidic acid in all four monomers
Method: single particle / : Arnold WR, Cheng Y

EMDB-40941:
TRPV1 in Nanodisc not bound with lysophosphatidic acid (apo)
Method: single particle / : Arnold WR, Cheng Y

EMDB-40949:
TRPV1 in nanodisc bound with one LPA in one monomer
Method: single particle / : Arnold WR, Cheng Y

EMDB-40951:
TRPV1 in nanodisc bound with two LPA molecules in opposite monomers
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41005:
TRPV1 in nanodisc bound with 2 LPA molecules in neighboring monomers
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41006:
TRPV1 in nanodisc bound with 3 LPA molecules
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41847:
TRPV1 in nanodisc bound with diC8-PIP2 in the dilated state
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41848:
TRPV1 in nanodisc bound with diC8-PIP2 in the closed state
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41855:
TRPV1 in nanodisc bound with PI-Br4 bound in Conformation 1 (monomer)
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41857:
TRPV1 in nanodisc bound with PI-Br4 bound in Conformation 2 (monomer)
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41864:
TRPV1 in nanodisc bound with empty vanilloid binding pocket at 4C
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41866:
TRPV1 in nanodisc bound with empty vanilloid binding pocket at 25C
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41873:
TRPV1 in nanodisc bound with PIP2-Br4
Method: single particle / : Arnold WR, Julius D, Cheng Y

EMDB-41879:
TRPV1 in nanodisc bound with PI-Br4, consensus structure
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8t0c:
TRPV1 in Nanodisc bound with lysophosphatidic acid in all four monomers
Method: single particle / : Arnold WR, Cheng Y

PDB-8t0e:
TRPV1 in Nanodisc not bound with lysophosphatidic acid (apo)
Method: single particle / : Arnold WR, Cheng Y

PDB-8t0y:
TRPV1 in nanodisc bound with one LPA in one monomer
Method: single particle / : Arnold WR, Cheng Y

PDB-8t10:
TRPV1 in nanodisc bound with two LPA molecules in opposite monomers
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8t3l:
TRPV1 in nanodisc bound with 2 LPA molecules in neighboring monomers
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8t3m:
TRPV1 in nanodisc bound with 3 LPA molecules
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8u2z:
TRPV1 in nanodisc bound with diC8-PIP2 in the dilated state
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8u30:
TRPV1 in nanodisc bound with diC8-PIP2 in the closed state
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8u3a:
TRPV1 in nanodisc bound with PI-Br4 bound in Conformation 1 (monomer)
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8u3c:
TRPV1 in nanodisc bound with PI-Br4 bound in Conformation 2 (monomer)
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8u3j:
TRPV1 in nanodisc bound with empty vanilloid binding pocket at 4C
Method: single particle / : Arnold WR, Julius D, Cheng Y

PDB-8u3l:
TRPV1 in nanodisc bound with empty vanilloid binding pocket at 25C
Method: single particle / : Arnold WR, Julius D, Cheng Y

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Nobel Prize for mechanically activated and temperature-gated ion channels

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