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Common occurrence of internal repeat symmetry in membrane proteins SCIE SCOPUS

Title
Common occurrence of internal repeat symmetry in membrane proteins
Authors
Choi, SJeon, JYang, SKim, S
Date Issued
2008-04
Publisher
WILEY-LISS
Abstract
Symmetry plays significant roles in protein structure and function. Particularly, symmetric interfaces are known to act as switches for two-state conformational change. Membrane proteins often undergo two-state conformational change during the transport process of ion channels or the active/inactive transitions in receptors. Here, we provide the first comprehensive analyses of internal repeat symmetry in membrane proteins. We examined the known membrane protein structures and found that, remarkably, nearly half of them have internal repeat symmetry. Moreover, we found that the conserved cores of these internal repeats are positioned at the interface of symmetric units when they are mapped on structures. Because Of the large sequence divergence that occurs between internal repeats, the inherent symmetry present in protein sequences often has only been detected after structure determination. We therefore developed a sensitive procedure to predict the internal repeat symmetry from sequence information and identified 4653 proteins that are likely to have internal repeat symmetry.
Keywords
protein structure; sequence analysis; transmembrane proteins; ion channels; structural bioinformatics; MITOCHONDRIAL ADP/ATP CARRIER; COMBINATORIAL EXTENSION CE; X-RAY-STRUCTURE; TRANSMEMBRANE PROTEINS; SECONDARY STRUCTURE; ENERGY LANDSCAPES; CHLORIDE CHANNEL; ION-CHANNEL; SEQUENCE; EVOLUTION
URI
https://oasis.postech.ac.kr/handle/2014.oak/22866
DOI
10.1002/PROT.21656
ISSN
0887-3585
Article Type
Article
Citation
PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, vol. 71, no. 1, page. 68 - 80, 2008-04
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