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The affinity of GXXXG motifs in transmembrane helix-helix interactions is modulated by long-range communication SCIE SCOPUS

Title
The affinity of GXXXG motifs in transmembrane helix-helix interactions is modulated by long-range communication
Authors
Melnyk, RAKim, SCurran, AREngelman, DMBowie, JUDeber, CM
Date Issued
2004-04-16
Publisher
AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
Abstract
Sequence motifs are responsible for ensuring the proper assembly of transmembrane (TM) helices in the lipid bilayer. To understand the mechanism by which the affinity of a common TM-TM interactive motif is controlled at the sequence level, we compared two well characterized GXXXG motif-containing homodimers, those formed by human erythrocyte protein glycophorin A (GpA, high-affinity dimer) and those formed by bacteriophage M13 major coat protein (MCP, low affinity dimer). In both constructs, the GXXXG motif is necessary for TM-TM association. Although the remaining interfacial residues (underlined) in GpA ((LI) under bar XXG (V) under bar XXG (V) under bar XX (T) under bar) differ from those in MCP ( (VV) under bar XXG (A) under bar XXG (I) under bar XX (F) under bar), molecular modeling performed here indicated that GpA and MCP dimers possess the same overall fold. Thus, we could introduce GpA interfacial residues, alone and in combination, into the MCP sequence to help decrypt the determinants of dimer affinity. Using both in vivo TOXCAT assays and SDS-PAGE gel migration rates of synthetic peptides derived from TM regions of the proteins, we found that the most distal interfacial sites, 12 residues apart (and similar to18 Angstrom in structural space), work in concert to control TM-TM affinity synergistically.
Keywords
M13 COAT PROTEIN; GLYCOPHORIN-A; MEMBRANE-PROTEIN; POLAR RESIDUES; ALPHA-HELICES; CROSS-LINKING; ION-CHANNEL; DOMAIN; ASSOCIATION; DIMER
URI
https://oasis.postech.ac.kr/handle/2014.oak/28839
DOI
10.1074/JBC.M313936200
ISSN
0021-9258
Article Type
Article
Citation
JOURNAL OF BIOLOGICAL CHEMISTRY, vol. 279, no. 16, page. 16591 - 16597, 2004-04-16
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