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Showing 1 - 50 of 2,151 items for (author: gal & a)

EMDB-56682: 
In situ ribosome structure from environmental sample of Pseudo-nitzschia
Method: subtomogram averaging / : Leisch N, Pyle E

EMDB-54006: 
Population B fibril generated from the Heterotypic interaction of Abeta40 and Medin.
Method: helical / : Pradhan B, Kumar ST, Wagner J, Gallardo R, Orlando G, Vleeschouwer MD, Madine J, Louros N, Neher J, Schymkowitz J, Rousseau F

EMDB-54007: 
Population A fibril generated from the Heterotypic interaction of Abeta40 and Medin.
Method: helical / : Pradhan B, Kumar ST, Wagner J, Gallardo R, Orlando G, Vleeschouwer MD, Madine J, Louros N, Neher J, Schymkowitz J, Rousseau F

PDB-9riv: 
Population B fibril generated from the Heterotypic interaction of Abeta40 and Medin.
Method: helical / : Pradhan B, Kumar ST, Wagner J, Gallardo R, Orlando G, Vleeschouwer MD, Madine J, Louros N, Neher J, Schymkowitz J, Rousseau F

PDB-9riw: 
Population A fibril generated from the Heterotypic interaction of Abeta40 and Medin.
Method: helical / : Pradhan B, Kumar ST, Wagner J, Gallardo R, Orlando G, Vleeschouwer MD, Madine J, Louros N, Neher J, Schymkowitz J, Rousseau F

EMDB-56480: 
Medin fibril generated from the heterotypic interaction of Abeta40 and Medin.
Method: helical / : Pradhan B, Kumar ST, Wagner J, Gallardo R, Zorzini V, Orlando G, Vleeschouwer MD, Madine J, Louros N, Neher J, Schymkowitz J, Rousseau F

PDB-9u02: 
Medin fibril generated from the heterotypic interaction of Abeta40 and Medin.
Method: helical / : Pradhan B, Kumar ST, Wagner J, Gallardo R, Zorzini V, Orlando G, Vleeschouwer MD, Madine J, Louros N, Neher J, Schymkowitz J, Rousseau F

EMDB-53950: 
SsCl at pH 6.5 - closed
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

EMDB-53951: 
SsCl at pH 6.5 + IVM - Partially opened
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

EMDB-53952: 
SsCl at pH 9 - Desensitized
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

EMDB-53953: 
SsCl at pH 9 + IVM - Opened
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

PDB-9rgm: 
SsCl at pH 6.5 - closed
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

PDB-9rgn: 
SsCl at pH 6.5 + IVM - Partially opened
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

PDB-9rgo: 
SsCl at pH 9 - Desensitized
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

PDB-9rgp: 
SsCl at pH 9 + IVM - Opened
Method: single particle / : Kleiz-Ferreira J, Brams M, Harrison PJ, Gallagher C, Nys M, Donze Y, Quigley A, Bertrand D, Ulens C

EMDB-75660: 
Capsid Subtomogram Average From NL4.3:PR(D25N) Immature HIV-1 Virions
Method: subtomogram averaging / : Preece B, Saffarian S

EMDB-74981: 
The ER membrane protein complex acts as a chaperone to promote voltage-gated calcium channel assembly
Method: single particle / : Singal B, Biswal M, Pleiner T

PDB-9zz6: 
The ER membrane protein complex acts as a chaperone to promote voltage-gated calcium channel assembly
Method: single particle / : Singal B, Biswal M, Pleiner T

EMDB-54931: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54932: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54943: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54944: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54946: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54948: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sit: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9siu: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjc: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjd: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjl: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjn: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54919: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54947: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54949: 
Type I-F_HNH variant Cascade RNP bound to dsDNA with trace of target strand into HNH domain rotated in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54950: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

PDB-9shx: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjm: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjo: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-47947: 
Tubulin Cofactors D,E,G,C and Tubulin complex -- TBCC N Terminus Bound to Tubulin
Method: single particle / : Taheri A, Al-bassam J

EMDB-47948: 
Tubulin cofactors D,E,G,C bound to tubulin dimer -- TBCC N terminus unbound
Method: single particle / : Taheri A, Al-bassam J

EMDB-47949: 
Tubulin cofactors D,E,G bound to tubulin dimer
Method: single particle / : Taheri A, Al-bassam J

EMDB-47954: 
Tubulin cofactors D,E,G bound to tubulin dimer
Method: single particle / : Taheri A, Al-bassam J

EMDB-70497: 
Tubulin cofactors D, Arl2, tubulin dimer
Method: single particle / : Taheri A, Al-bassam J

EMDB-70498: 
Tubulin cofactors D,E,G bound to tubulin dimer. Class 2
Method: single particle / : Taheri A, Al-bassam J

EMDB-70499: 
Tubulin cofactors D,E,G bound to tubulin dimer. Class 1
Method: single particle / : Taheri A, Al-bassam J

EMDB-70504: 
Tubulin Cofactors D,E,G,C and Tubulin complex -- TBCC N Terminus Bound to Tubulin Core Refinement
Method: single particle / : Taheri A, Al-bassam J

EMDB-70505: 
Tubulin Cofactors D,E,G,C and Tubulin complex -- TBCC N Terminus Bound to Tubulin. TBCC Focused
Method: single particle / : Taher A, Al-bassam J

EMDB-70506: 
Tubulin Cofactors D,E,G,C and Tubulin complex -- TBCC N Terminus Bound to Tubulin. TBC E Refinement
Method: single particle / : Taheri A, Al-bassam J

EMDB-70516: 
Tubulin cofactors D,E,G,C bound to tubulin dimer -- TBCC N terminus unbound. Core Refinement
Method: single particle / : Taheri A, Al-bassam J

EMDB-70518: 
Tubulin cofactors D,E,G,C bound to tubulin dimer -- TBCC N terminus unbound. TBCE Refinement
Method: single particle / : Taheri A, Al-bassam J

PDB-9edr: 
Tubulin Cofactors D,E,G,C and Tubulin complex -- TBCC N Terminus Bound to Tubulin
Method: single particle / : Taheri A, Al-bassam J
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