Brunsveld Luc, Waldmann Herbert, Huster Daniel
Max Planck Institute of Molecular Physiology, Dortmund, Germany.
Biochim Biophys Acta. 2009 Jan;1788(1):273-88. doi: 10.1016/j.bbamem.2008.08.006. Epub 2008 Aug 15.
Biological membranes are interesting interfaces, at which important biological processes occur. In addition to integral membrane proteins, a number of proteins bind to the membrane surface and associate with it. Posttranslational lipid modification is one important mechanism, by which soluble molecules develop a propensity towards the membrane and reversibly bind to it. Membrane binding by insertion of hydrophobic lipid moieties is relevant for up to 10% of all cellular proteins. A particular interesting lipid-modified protein is the small GTPase Ras, which plays a key role in cellular signal transduction. Until recently, the structural basis for membrane binding of Ras was not well-defined. However, with the advent of new synthesis techniques and the advancement of several biophysical methods, a number of structural and dynamical features about membrane binding of Ras proteins have been revealed. This review will summarize the chemical biology of Ras and discuss in more detail the biophysical and structural features of the membrane bound C-terminus of the protein.
生物膜是有趣的界面,重要的生物过程在此发生。除了整合膜蛋白外,许多蛋白质与膜表面结合并与之关联。翻译后脂质修饰是一种重要机制,通过该机制可溶性分子产生趋向膜的倾向并与之可逆结合。通过插入疏水脂质部分实现的膜结合与所有细胞蛋白的10%相关。一种特别有趣的脂质修饰蛋白是小GTP酶Ras,它在细胞信号转导中起关键作用。直到最近,Ras膜结合的结构基础仍未明确界定。然而,随着新合成技术的出现和几种生物物理方法的进步,关于Ras蛋白膜结合的一些结构和动力学特征已被揭示。本综述将总结Ras的化学生物学,并更详细地讨论该蛋白膜结合C末端的生物物理和结构特征。