Chemical synthesis of transmembrane peptide and its application for research on the transmembrane-juxtamembrane region of membrane protein

Biopolymers. 2016 Nov 4;106(4):613-21. doi: 10.1002/bip.22775.

Abstract

Membrane proteins possess one or more hydrophobic regions that span the membrane and interact with the lipids that constitute the membrane. The interactions between the transmembrane (TM) region and lipids affect the structure and function of these membrane proteins. Molecular characterization of synthetic TM peptides in lipid bilayers helps to understand how the TM region participates in the formation of the structure and in the function of membrane proteins. The use of synthetic peptides enables site-specific labeling and modification and allows for designing of an artificial TM sequence. Research involving such samples has resulted in significant increase in the knowledge of the mechanisms that govern membrane biology. In this review, the chemical synthesis of TM peptides has been discussed. The preparation of synthetic TM peptides is still not trivial; however, the accumulated knowledge summarized here should provide a basis for preparing samples for spectroscopic analyses. The application of synthetic TM peptides for gaining insights into the mechanism of signal transduction by receptor tyrosine kinase (RTK) has also been discussed. RTK is a single TM protein and is one of the difficult targets in structural biology as crystallization of the full-length receptor has not been successful. This review describes the structural characterization of the synthetic TM-juxtamembrane sequence and proposes a possible scheme for the structural changes in this region for the activation of ErbBs, the epidermal growth factor receptor family. © 2015 Wiley Periodicals, Inc. Biopolymers (Pept Sci) 106: 613-621, 2016.

Keywords: ErbB; juxtamembrane region; peptide synthesis; transmembrane peptide.

Publication types

  • Review

MeSH terms

  • Animals
  • Humans
  • Membrane Proteins / chemistry*
  • Peptides / chemical synthesis*
  • Peptides / chemistry*
  • Protein Domains

Substances

  • Membrane Proteins
  • Peptides