Relation between sequence and structure in membrane proteins
Ver/Abrir
Otros/as autores/as
Fecha de publicación
2013ISSN
1367-4803
Resumen
Motivation: Integral polytopic membrane proteins contain only two
types of folds in their transmembrane domains: -helix bundles and
b-barrels. The increasing number of available crystal structures of
these proteins permits an initial estimation of how sequence variability
affects the structure conservation in their transmembrane domains.
We, thus, aim to determine the pairwise sequence identity necessary
to maintain the transmembrane molecular architectures compatible
with the hydrophobic nature of the lipid bilayer.
Results: Root-mean-square deviation (rmsd) and sequence identity
were calculated from the structural alignments of pairs of homologous
polytopic membrane proteins sharing the same fold. Analysis of these
data reveals that transmembrane segment pairs with sequence identity
in the so-called ‘twilight zone’ (20–35%) display high-structural
similarity (rmsd51.5A°
). Moreover, a large group of b-barrel pairs
with low-sequence identity (520%) still maintain a close structural
similarity (rmsd52.5A°
). Thus, we conclude that fold preservation in
transmembrane regions requires less sequence conservation than for
globular proteins. These findings have direct implications in homology
modeling of evolutionary-related membrane proteins.
Tipo de documento
Artículo
Lengua
Inglés
Palabras clave
Proteïnes
Páginas
4 p.
Publicado por
Oxford University Press
Citación
Mireia Olivella, Angel Gonzalez, Leonardo Pardo and Xavier Deupi.
"Relation between sequence and structure in membrane proteins" A: Bioinformatics (2013) 29 (13): 1589-1592 first published online May 14, 2013 doi:10.1093/bioinformatics/btt249
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