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3J9G
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ATOMIC MODEL OF THE VIPA/VIPB, THE TYPE SIX SECRETION SYSTEM CONTRACTILE SHEATH OF VIBRIO CHOLERAE FROM CRYO-EM
Descriptor:VipA, VipB
Authors:Kudryashev, M., Wang, R.Y.-R., Brackmann, M., Scherer, S., Maier, T., Baker, D., DiMaio, F., Stahlberg, H., Egelman, E.H., Basler, M.
Deposit date:2015-01-16
Release date:2015-03-11
Method:ELECTRON MICROSCOPY (3.5 Å)
Cite:Structure of the Type VI Secretion System Contractile Sheath.
Cell(Cambridge,Mass.), 160, 2015
4ALZ
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THE YERSINIA T3SS BASAL BODY COMPONENT YSCD REVEALS A DIFFERENT STRUCTURAL PERIPLASMATIC DOMAIN ORGANIZATION TO KNOWN HOMOLOGUE PRGH
Descriptor:YOP PROTEINS TRANSLOCATION PROTEIN D
Authors:Schmelz, S., Wisand, U., Stenta, M., Muenich, S., Widow, U., Cornelis, G.R., Heinz, D.W.
Deposit date:2012-03-06
Release date:2013-04-24
Last modified:2013-11-13
Method:X-RAY DIFFRACTION (1.4 Å)
Cite:In Situ Structural Analysis of the Yersinia Enterocolitica Injectisome.
Elife, 2, 2013
3C0M
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CRYSTAL STRUCTURE OF THE PROAEROLYSIN MUTANT Y221G
Descriptor:Aerolysin
Authors:Pernot, L., Schiltz, M., Thurnheer, S., Burr, S.E., van der Goot, G.
Deposit date:2008-01-21
Release date:2008-02-12
Last modified:2013-10-02
Method:X-RAY DIFFRACTION (2.88 Å)
Cite:Molecular assembly of the aerolysin pore reveals a swirling membrane-insertion mechanism.
Nat.Chem.Biol., 9, 2013
3C0N
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CRYSTAL STRUCTURE OF THE PROAEROLYSIN MUTANT Y221G AT 2.2 A
Descriptor:Aerolysin
Authors:Pernot, L., Schiltz, M., Thurnheer, S., Burr, S.E., van der Goot, G.
Deposit date:2008-01-21
Release date:2008-02-12
Last modified:2013-10-02
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Molecular assembly of the aerolysin pore reveals a swirling membrane-insertion mechanism.
Nat.Chem.Biol., 9, 2013
3C0O
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CRYSTAL STRUCTURE OF THE PROAEROLYSIN MUTANT Y221G COMPLEXED WITH MANNOSE-6-PHOSPHATE
Descriptor:Aerolysin
Authors:Pernot, L., Schiltz, M., Thurnheer, S., Burr, S.E., van der Goot, G.
Deposit date:2008-01-21
Release date:2008-02-12
Last modified:2013-10-02
Method:X-RAY DIFFRACTION (2.5 Å)
Cite:Molecular assembly of the aerolysin pore reveals a swirling membrane-insertion mechanism.
Nat.Chem.Biol., 9, 2013
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