Membrane Topology and Insertion of Membrane Proteins: Search for Topogenic Signals
Open Access
- 1 March 2000
- journal article
- review article
- Published by American Society for Microbiology in Microbiology and Molecular Biology Reviews
- Vol. 64 (1) , 13-33
- https://doi.org/10.1128/mmbr.64.1.13-33.2000
Abstract
SUMMARY: Integral membrane proteins are found in all cellular membranes and carry out many of the functions that are essential to life. The membrane-embedded domains of integral membrane proteins are structurally quite simple, allowing the use of various prediction methods and biochemical methods to obtain structural information about membrane proteins. A critical step in the biosynthetic pathway leading to the folded protein in the membrane is its insertion into the lipid bilayer. Understanding of the fundamentals of the insertion and folding processes will significantly improve the methods used to predict the three-dimensional membrane protein structure from the amino acid sequence. In the first part of this review, biochemical approaches to elucidate membrane protein topology are reviewed and evaluated, and in the second part, the use of similar techniques to study membrane protein insertion is discussed. The latter studies search for signals in the polypeptide chain that direct the insertion process. Knowledge of the topogenic signals in the nascent chain of a membrane protein is essential for the evaluation of membrane topology studies.Keywords
This publication has 248 references indexed in Scilit:
- Membrane Topology of the Sodium Ion-dependent Citrate Carrier of Klebsiella pneumoniaePublished by Elsevier ,1996
- Regulation by the ribosome of the GTPase of the signal-recognition particle during protein targetingNature, 1996
- Reinitiation of Protein Translocation across the Endoplasmic Reticulum Membrane for the Topogenesis of Multispanning Membrane ProteinsJournal of Biological Chemistry, 1996
- Membrane Topology of the Human Na+/Glucose Cotransporter SGLT1Published by Elsevier ,1996
- Identification of Acetylcholine Receptor Channel-Lining Residues in the M1 Segment of the .alpha.-SubunitBiochemistry, 1995
- GTP binding and hydrolysis by the signal recognition particle during initiation of protein translocationNature, 1993
- Non-random Distribution of Amino Acids in the Transmembrane Segments of Human Type I Single Span Membrane ProteinsJournal of Molecular Biology, 1993
- Membrane protein structure predictionJournal of Molecular Biology, 1992
- Control of topology and mode of assembly of a polytopic membrane protein by positively charged residuesNature, 1989
- Hydrophobic Organization of Membrane ProteinsScience, 1989