Elderdfi Mohamed, Zegarlińska Jolanta, Jones Walis, Sikorski Aleksander F
Department of Cytobiochemistry, Faculty of Biotechnology, University of Wrocław, 50-383 Wrocław, Poland.
Gen Physiol Biophys. 2017 Oct;36(4):443-454. doi: 10.4149/gpb_2017002. Epub 2017 Jun 27.
The interaction between membrane palmitoylated protein -1 (MPP1) with lipid bi- and mono-layers composed of a DOPC/SM/Chol mixture was investigated. MPP1 co-migrates with liposomes to the top of the liposome flotation gradient, indicating binding of MPP1 with liposomes. The injection of MPP1 into the subphase of an LB monolayer of the above lipid composition induced an increase in surface pressure, indicating that MPP1 molecules were incorporated into the lipid monolayer. The compressibility modulus isotherms of MPP1, lipids and lipid-MPP1 films have essentially different shapes from one another. Pure MPP1 isotherms were characterized by a peak in surface pressure of 25-35 mNm-1. This transition disappears in isotherms obtained with lipid monolayers in the presence of MPP1, which suggests an interaction between the protein and the lipid monolayers. In addition, this interaction is sensitive to the presence of cholesterol in the lipid monolayer, as adding of MPP1 into the subphase of lipid monolayers containing cholesterol resulted in a much larger increase in surface area than when MPP1 is injected into the subphase of a lipid monolayer devoid of cholesterol. In conclusion, the data demonstrates that MPP1 interacts with lipid mixtures in two different model membrane systems.
研究了膜棕榈酰化蛋白-1(MPP1)与由二油酰磷脂酰胆碱(DOPC)/鞘磷脂(SM)/胆固醇(Chol)混合物组成的脂质双分子层和单分子层之间的相互作用。MPP1与脂质体共同迁移至脂质体浮选梯度的顶部,表明MPP1与脂质体结合。将MPP1注入上述脂质组成的LB单分子层的亚相中会导致表面压力增加,这表明MPP1分子被整合到脂质单分子层中。MPP1、脂质和脂质-MPP1膜的压缩模量等温线彼此具有本质上不同的形状。纯MPP1等温线的特征是表面压力峰值为25-35 mN/m。在MPP1存在的情况下,用脂质单分子层获得的等温线中这种转变消失,这表明蛋白质与脂质单分子层之间存在相互作用。此外,这种相互作用对脂质单分子层中胆固醇的存在敏感,因为将MPP1添加到含有胆固醇的脂质单分子层的亚相中导致的表面积增加比将MPP1注入不含胆固醇的脂质单分子层的亚相时大得多。总之,数据表明MPP1在两种不同的模型膜系统中与脂质混合物相互作用。