Skip to main navigation Skip to search Skip to main content

The Control of Transmembrane Helix Transverse Position in Membranes by Hydrophilic Residues

  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

The ability of hydrophilic residues to shift the transverse position of transmembrane (TM) helices within bilayers was studied in model membrane vesicles. Transverse shifts were detected by fluorescence measurements of the membrane depth of a Trp residue at the center of a hydrophobic sequence. They were also estimated from the effective length of the TM-spanning sequence, derived from the stability of the TM configuration under conditions of negative hydrophobic mismatch. Hydrophilic residues (at the fifth position in a 21-residue hydrophobic sequence composed of alternating Leu and Ala residues and flanked on both ends by two Lys) induced transverse shifts that moved the hydrophilic residue closer to the membrane surface. At pH 7, the dependence of the extent of shift upon the identity of the hydrophilic residue increased in the order: L < G∼Y∼T < R∼H < S < P < K < E∼Q < N < D. By varying pH, shifts with ionizable residues fully charged or uncharged were measured, and the extent of shift increased in the order: L < G∼Y∼Ho∼T < Eo∼R < S < P < K+< Q∼Do∼H+ < N∼E- < D-. The dependence of transverse shifts upon hydrophilic residue identity was consistent with the hypothesis that shift magnitude is largely controlled by the combination of side chain hydrophilicity, ionization state, and ability to position polar groups near the bilayer surface (snorkeling). Additional experiments showed that shift was also modulated by the position of the hydrophilic residue in the sequence and the hydrophobicity of the sequence moved out of the bilayer core upon shifting. Combined, these studies show that the insertion boundaries of TM helices are very sensitive to sequence, and can be altered even by weakly hydrophilic residues. Thus, many TM helices may have the capacity to exist in more than one transverse position. Knowledge of the magnitudes of transverse shifts induced by different hydrophilic residues should be useful for design of mutagenesis studies measuring the effect of transverse TM helix position upon function.

Original languageEnglish
Pages (from-to)1251-1269
Number of pages19
JournalJournal of Molecular Biology
Volume374
Issue number5
DOIs
StatePublished - Dec 14 2007

Keywords

  • hydrophilic residues
  • membrane proteins
  • transmembrane helices
  • transmembrane helix boundary
  • transverse helix shifts

Fingerprint

Dive into the research topics of 'The Control of Transmembrane Helix Transverse Position in Membranes by Hydrophilic Residues'. Together they form a unique fingerprint.

Cite this