INTEGRATION OF A K+ CHANNEL-ASSOCIATED PEPTIDE IN A LIPID BILAYER - CONFORMATION, LIPID-PROTEIN INTERACTIONS, AND ROTATIONAL DIFFUSION

被引:31
作者
HORVATH, LI
HEIMBURG, T
KOVACHEV, P
FINDLAY, JBC
HIDEG, K
MARSH, D
机构
[1] MAX PLANCK INST BIOPHYS CHEM,SPEKT ABT,D-37077 GOTTINGEN,GERMANY
[2] UNIV LEEDS,DEPT BIOCHEM & MOLEC BIOL,LEEDS LS2 9JT,W YORKSHIRE,ENGLAND
[3] UNIV PECS,CENT LAB CHEM,H-7643 PECS,HUNGARY
[4] HUNGARIAN ACAD SCI,BIOL RES CTR,INST BIOPHYS,H-6701 SZEGED,HUNGARY
关键词
D O I
10.1021/bi00012a004
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The 26-residue peptide of sequence KEALYILMVLGFFGFFTLGLMLSYIR, which contains the single putative transmembrane domain of a small protein that is associated with slow voltage-gated K+ channels, has been incorporated in bilayers of dimyristoylphosphatidylcholine by dialysis from 2-chloroethanol to form complexes of homogeneous lipid/peptide ratio. Fourier transform infrared spectroscopy indicates that the peptide is integrated in the lipid bilayer wholly in a beta-sheet conformation. The electron spin resonance spectra of spin-labeled lipids in the lipid/peptide complexes contain a component corresponding to lipids whose chains are motionally restricted in a manner similar to those of lipids at the hydrophobic surface of integral transmembrane proteins. From the dependence of the lipid spin label spectra on the lipid/peptide ratio of the complexes, it is found that ca. 2.5 lipids per peptide monomer, independent of the species of spin-labeled lipid, are motionally restricted by direct interaction with the peptide in the bilayer. This value would be consistent with, e.g., a beta-barrel structure for the peptide in which the beta-strands either are strongly tilted or have a reverse turn at their center. A preferential selectivity of interaction with the peptide is observed for the negatively charged spin-labeled lipids phosphatidic acid, stearic acid, and phosphatidylserine, which indicates close proximity of the positively charged residues at the peptide termini to the Lipid headgroups. The saturation-transfer electron spin resonance spectra of the peptide spin-labeled at a cysteine residue replacing Leu18 evidence rather slow rotational diffusion in the lipid complexes. This indicates that the presumably enclosed beta-sheet units of the peptide are aggregated in oligomeric assemblies in the lipid bilayer. The results suggest a way in which one type of channel unit may be integrated in the membrane.
引用
收藏
页码:3893 / 3898
页数:6
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