Protein export and membrane biogenesis [electronic resource] / editor, Ross E. Dalbey.

The incentive for putting together Volume 4 of this series was to review the wealth of new information that has become available in prokaryotic organisms in protein export and membrane biogenesis. Just in the last several years, protein translocation has now been efficiently reconstituted using defi...

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Bibliographic Details
Online Access: Full Text (via ScienceDirect)
Other Authors: Dalbey, Ross E.
Format: Electronic eBook
Language:English
Published: Greenwich, Conn. : JAI Press, 1995.
Series:Advances in cell and molecular biology of membranes and organelles ; v. 4.
Subjects:

MARC

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245 0 0 |a Protein export and membrane biogenesis  |h [electronic resource] /  |c editor, Ross E. Dalbey. 
260 |a Greenwich, Conn. :  |b JAI Press,  |c 1995. 
300 |a 1 online resource (xiv, 276 pages) :  |b illustrations. 
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490 1 |a Advances in cell and molecular biology of membranes and organelles ;  |v v. 4. 
504 |a Includes bibliographical references and index. 
505 0 |a Membrane protein assembly -- Membrane insertion of small proteins: Evolutionary and functional aspects -- Protein translocation genetics -- Biochemical analyses of components comprising the protein translocation machinery of Escherichia coli -- Pigment-protein complex assembly in rhodobacter sphaeroides and rhodobacter capsulatus -- Identification and reconstitution of anion exchange mechanisms in bacteria -- Helix packing in the C-terminal half of lactose permease -- Export and assembly of outer membrane proteins in E. coli -- Structure-function relationships in the membrane channel porin -- Role of phospholipids in Escherichia coli cell function -- Mechanism of transmembrane signaling in osmoregulation. 
520 |a The incentive for putting together Volume 4 of this series was to review the wealth of new information that has become available in prokaryotic organisms in protein export and membrane biogenesis. Just in the last several years, protein translocation has now been efficiently reconstituted using defined components and the mechanism by which proteins are moved across membrane bilayers is now being examined at a higher resolution. In addition, because of a new technical breakthrough using osmolytes, it is now possible to reconstitute a number of channel proteins, ATPase, receptors, and transporters. In many cases, it is possible to successfully predict the membrane topology of these types of proteins using both "hydrophobicity analysis" and the "positive inside" rule. 
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650 0 |a Membrane proteins  |x Physiological transport. 
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650 7 |a Membrane proteins  |x Physiological transport.  |2 fast  |0 (OCoLC)fst01015852. 
650 7 |a Membranes (Biology)  |x Fluidity.  |2 fast  |0 (OCoLC)fst01015862. 
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