1bm1: Difference between revisions

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[[Image:1bm1.gif|left|200px]]
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{{STRUCTURE_1bm1|  PDB=1bm1  |  SCENE=  }}  
{{STRUCTURE_1bm1|  PDB=1bm1  |  SCENE=  }}  


'''CRYSTAL STRUCTURE OF BACTERIORHODOPSIN IN THE LIGHT-ADAPTED STATE'''
===CRYSTAL STRUCTURE OF BACTERIORHODOPSIN IN THE LIGHT-ADAPTED STATE===




==Overview==
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In the purple membrane of Halobacterium salinarium, bacteriorhodopsin trimers are arranged in a hexagonal lattice. When purple membrane sheets are incubated at high temperature with neutral detergent, membrane vesicularization takes place, yielding inside-out vesicles with a diameter of 50 nm. The vesicular structure becomes unstable at low temperature, where successive fusion of the vesicles yields a crystal which is composed of stacked planar membranes. X-ray crystallographic analysis reveals that the bacteriorhodopsin trimers are arranged in a honeycomb lattice in each membrane layer and that neighbouring membranes orient in opposite directions. The native structure of the trimeric unit is preserved in the honeycomb lattice, irrespective of alterations in the in-plane orientation of the trimer. One phospholipid tightly bound to a crevice between monomers in the trimeric unit is suggested to act as a glue in the formation of the trimer.
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==About this Structure==
==About this Structure==
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[[Category: Proton pump]]
[[Category: Proton pump]]
[[Category: Retinal protein]]
[[Category: Retinal protein]]
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Revision as of 19:22, 30 June 2008

File:1bm1.png

Template:STRUCTURE 1bm1

CRYSTAL STRUCTURE OF BACTERIORHODOPSIN IN THE LIGHT-ADAPTED STATECRYSTAL STRUCTURE OF BACTERIORHODOPSIN IN THE LIGHT-ADAPTED STATE

Template:ABSTRACT PUBMED 10393291

About this StructureAbout this Structure

1BM1 is a Single protein structure of sequence from Halobacterium salinarum. Full crystallographic information is available from OCA.

ReferenceReference

Specific lipid-protein interactions in a novel honeycomb lattice structure of bacteriorhodopsin., Sato H, Takeda K, Tani K, Hino T, Okada T, Nakasako M, Kamiya N, Kouyama T, Acta Crystallogr D Biol Crystallogr. 1999 Jul;55(Pt 7):1251-6. PMID:10393291

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