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Showing all 34 items for (author: mitra & ak)

EMDB-63642: 
Structure of SPIN90 dimer-Arp2/3 complex-nucleated actin filament (singlet complex)
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63658: 
Structure of SPIN90 dimer-Arp2/3 complexes-nucleated actin filaments (Doublet Complex)
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63880: 
Focused Arp2/3 complex map of SPIN90 dimer-Arp2/3 complex-filament singlet complex structure
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63883: 
Focused SPIN90-dimer map of SPIN90 dimer-Arp2/3 complex-filament singlet complex structure
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63886: 
Focused actin filament map of SPIN90 dimer-Arp2/3 complex-filament singlet complex structure
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63887: 
Arp2/3 complex from bottom half of SPIN90 dimer-Arp2/3 complex-actin filament Doublet complex
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63888: 
Arp2/3 complex from the top half of SPIN90 dimer-Arp2/3 complex-actin filament Doublet complex
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63889: 
Focused SPIN90-dimer of SPIN90 dimer-Arp2/3 complex-actin filament Doublet complex
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63890: 
Focused filament from second half of SPIN90 dimer-Arp2/3 complex-actin filament Doublet complex
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-63891: 
Focused filament from one half of SPIN90 dimer-Arp2/3 complex-actin filament Doublet complex
Method: single particle / : Francis J, Pathri AK, Chowdhury S

EMDB-4800: 
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate in extended state, 3-fold symmetrised
Method: single particle / : Desfosses A

EMDB-4802: 
Cryo-EM structure of the anti-feeding prophage (AFP) helical sheath-tube complex in extended state
Method: helical / : Desfosses A

EMDB-4859: 
Cryo-EM structure of the anti-feeding prophage (AFP) sheath-tube in contracted state, C6 symmetrized
Method: single particle / : Desfosses A

EMDB-4871: 
Cryo-EM structure of the anti-feeding prophage (AFP) needle from signal-subtracted particles
Method: single particle / : Desfosses A

EMDB-4876: 
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate in contracted state
Method: single particle / : Desfosses A

EMDB-4782: 
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate, 6-fold symmetrised
Method: single particle / : Desfosses A

EMDB-4783: 
Composite map of an entire contractile injection device : the anti-feeding prophage (AFP)
Method: single particle / : Desfosses A

EMDB-4784: 
Cryo-EM structure of the anti-feeding prophage cap (AFP tube terminating cap)
Method: single particle / : Desfosses A

EMDB-4801: 
Cryo-EM structure of the anti-feeding prophage cap (AFP tube terminating cap), ending with Afp3
Method: single particle / : Desfosses A

EMDB-4803: 
Cryo-EM structure of the anti-feeding prophage (AFP) helical sheath in contracted state
Method: helical / : Desfosses A

EMDB-3814: 
TORC1 Organised in Inhibited Domains (TOROIDs) regulate TORC1 activity
Method: helical / : Prouteau M, Desfosses A, Sieben C, Bourgoint C, Mozaffri NL, Demurtas D, Mitra AK, Guichard P, Manley S, Loewith R

EMDB-3414: 
Structures of human peroxiredoxin 3 suggest self-chaperoning assembly that maintains catalytic state
Method: helical / : Yewdall AN, Venugopal HP, Desfosses A, Abrishami V, Yosaatmadja Y, Hampton MB, Gerrard JA, Goldstone D, Mitra AK, Mazdak Radjainia M

EMDB-3233: 
Volta phase plate cryo-EM of the small protein complex Prx3
Method: single particle / : Khoshouei M, Radjainia M, Phillips AJ, Gerrard JA, Mitra AK, Plitzko JM, Baumeister W, Danev R

EMDB-6309: 
Cryo-EM structure of human peroxiredoxin-3 filament reveals the assembly of a putative chaperone
Method: single particle / : Radjainia M, Venugopal HP, Desfosses A, Phillips AJ, Yewdall NA, Hampton MB, Gerrard JA, Mitra AK

PDB-4v4v: 
Structure of a pre-translocational E. coli ribosome obtained by fitting atomic models for RNA and protein components into cryo-EM map EMD-1056
Method: single particle / : Mitra K, Frank J

PDB-4v4w: 
Structure of a SecM-stalled E. coli ribosome complex obtained by fitting atomic models for RNA and protein components into cryo-EM map EMD-1143
Method: single particle / : Mitra K, Frank J

EMDB-2419: 
3-dimensional structure of the toxin-delivery particle antifeeding prophage of Serratia entomophila
Method: single particle / : Heymann JB, Bartho JD, Rybakova D, Venugopal HP, Winkler DC, Sen A, Hurst MRH, Mitra AK

EMDB-2423: 
3-dimensional structure of the toxin-delivery particle antifeeding prophage of Serratia entomophila
Method: single particle / : Heymann JB, Bartho JD, Rybakova D, Venugopal HP, Winkler DC, Sen A, Hurst MRH, Mitra AK

EMDB-5215: 
Anthrax toxin PA63 in complex with 1G3
Method: single particle / : Radjainia M, Hyun J, Leysath CE, Leppla SH, Mitra AK

PDB-2x8q: 
Cryo-EM 3D model of the icosahedral particle composed of Rous sarcoma virus capsid protein pentamers
Method: single particle / : K Hyun J, Radjainia M, Kingston RL, Mitra AK

EMDB-1710: 
Cryo-EM 3D model of the icosahedral particle composed of Rous sarcoma virus capsid protein pentamers
Method: single particle / : Hyun JK, Radjainia M, Kingston RL, Mitra AK

EMDB-1143: 
Structure of the E. coli protein-conducting channel bound to a translating ribosome.
Method: single particle / : Mitra K, Schaffitzel C, Shaikh T, Tama F, Jenni S, Brooks III CL, Ban N, Frank J

PDB-2akh: 
Normal mode-based flexible fitted coordinates of a non-translocating SecYEG protein-conducting channel into the cryo-EM map of a SecYEG-nascent chain-70S ribosome complex from E. coli
Method: single particle / : Mitra KM, Schaffitzel C, Shaikh T, Tama F, Jenni S, Brooks III CL, Ban N, Frank J

PDB-2aki: 
Normal mode-based flexible fitted coordinates of a translocating SecYEG protein-conducting channel into the cryo-EM map of a SecYEG-nascent chain-70S ribosome complex from E. coli
Method: single particle / : Mitra K, Schaffitzel C, Shaikh T, Tama F, Jenni S, Brooks III CL, Ban N, Frank J
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