Gorfe Alemayehu A, Babakhani Arneh, McCammon J Andrew
Department of Chemistry and Biochemistry, Howard Hughes Medical Institute, and Department of Pharmacology, University of California at San Diego, La Jolla, California 92093-0365, USA.
J Am Chem Soc. 2007 Oct 10;129(40):12280-6. doi: 10.1021/ja073949v. Epub 2007 Sep 19.
Ras GTPases become functionally active when anchored to membranes by inserting their lipid modified side chains. Their role in cell division, development, and cancer has made them targets of extensive research efforts, yet the mechanism of membrane insertion and the structure of the resulting complex remain elusive. Recently, the structure of the full-length H-ras protein in a DMPC bilayer has been computationally characterized. Here, the atomic interactions between the H-ras membrane anchor and the DMPC bilayer are investigated in detail. We find that the palmitoylated cysteines and Met182 have dual contributions to membrane affinity: hydrogen bonding by their amides and van der Waals interaction by their hydrophobic side chains. The polar side chains help maintain the orientation of the anchor. Although the overall structure of the bilayer is similar to that of a pure DMPC, there are localized perturbations. These perturbations depend on the insertion depth and backbone localization of the anchor, which in turn is modulated by the catalytic domain and the linker. The pattern of anchor amide-DMPC phosphate/carbonyl hydrogen bonds and the flexibility of Palm184 are important in discriminating between different modes of ras-DMPC interactions. The results provide structural arguments in support of the proposed participation of ras in the organization of membrane nanoclusters.
Ras GTPases通过插入其脂质修饰的侧链锚定在膜上时会变得功能活跃。它们在细胞分裂、发育和癌症中的作用使其成为广泛研究的目标,但膜插入机制以及由此产生的复合物结构仍然难以捉摸。最近,已通过计算表征了全长H-ras蛋白在DMPC双层中的结构。在此,详细研究了H-ras膜锚与DMPC双层之间的原子相互作用。我们发现棕榈酰化的半胱氨酸和Met182对膜亲和力有双重贡献:它们的酰胺形成氢键,疏水侧链形成范德华相互作用。极性侧链有助于维持锚定的方向。尽管双层的整体结构与纯DMPC的结构相似,但存在局部扰动。这些扰动取决于锚定的插入深度和主链定位,而这又由催化结构域和连接子调节。锚定酰胺-DMPC磷酸/羰基氢键的模式以及Palm184的灵活性在区分ras-DMPC相互作用的不同模式中很重要。这些结果提供了结构论据,支持ras参与膜纳米簇组织的提议。