Investigations into the membrane interactions of m-calpain domain V

被引:28
作者
Dennison, SR
Dante, S
Hauss, T
Brandenburg, K
Harris, F
Phoenix, DA [1 ]
机构
[1] Univ Cent Lancashire, Fac Sci, Deans Off, Dept Forens & Invest Sci, Preston PR1 2HE, Lancs, England
[2] Hahn Meitner Inst Berlin GmbH, Berlin Neutron Scattering Ctr, Berlin, Germany
[3] Forschungsinst Borstel, Div Biophys, D-2061 Borstel, Germany
关键词
D O I
10.1529/biophysj.104.049957
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
m-Calpain is a calcium-dependent heterodimeric protease implicated in a number of pathological conditions. The activation of m-calpain appears to be modulated by membrane interaction, which has been predicted to involve oblique-orientated alpha-helix formation by a GTAMRILGGVI segment located in domain V of the protein's small subunit. Here, we have investigated this prediction. Fourier transform infrared conformational analysis showed that VP1, a peptide homolog of this segment, exhibited alpha-helicity of similar to 45% in the presence of dimyristoylphosphatidylcholine/dimyristoylphosphatidylserine (DMPS) vesicles. The level of helicity was unaffected over a 1- to 8-mM concentration range and did not alter when the anionic lipid composition of these vesicles was varied between 1% and 10% DMPS. Similar levels of alpha-helicity were observed in trifluoroethanol and the peptide appeared to adopt alpha-helical structure at an air/water interface with a molecular area of 164 angstrom(2) at the monolayer collapse pressure. VP1 was found to penetrate dimyristoylphosphatidylcholine/DMPS monolayers, and at an initial surface pressure of 30 mN m(-1), the peptide induced surface pressure changes in these monolayers that correlated strongly with their anionic lipid content (maximal at 4 mN m(-1) in the presence of 10% DMPS). Neutron diffraction studies showed VP1 to be localized at the hydrophobic core of model palmitoyloleylphosphatidylcholine/palmitoyloleylphosphatidylserine (10: 1 molar ratio) bilayer structures and, in combination, these results are consistent with the oblique membrane penetration predicted for the peptide. It would also appear that although not needed for structural stabilization anionic lipid was required for membrane penetration.
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页码:3008 / 3017
页数:10
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