Department of Integrative Biology and Pharmacology, The University of Texas Health Science Center at Houston, 6431 Fannin St., Houston, Texas 77030, USA.
J Am Chem Soc. 2012 Oct 17;134(41):17278-85. doi: 10.1021/ja307716z. Epub 2012 Oct 8.
Experiments have shown that homologous Ras proteins containing different lipid modification, which is required for membrane binding, form nonoverlapping nanoclusters on the plasma membrane. However, the physical basis for clustering and lateral organization remains poorly understood. We have begun to tackle this issue using coarse-grained molecular dynamics simulations of the H-ras lipid anchor (tH), a triply lipid-modified heptapeptide embedded in a domain-forming mixed lipid bilayer [Janosi L. et al. Proc. Natl. Acad. Sci. U.S.A. 2012, 109, 8097]. Here we use the same simulation approach to investigate the effect of peptide concentration and bilayer composition on the clustering and lateral distribution of tH. We found no major difference in the clustering behavior of tH above a certain concentration. However, the simulations predict the existence of a critical concentration below which tH does not form nanoclusters. Moreover, our data demonstrate that cholesterol enhances the stability of tH nanoclusters but is not required for their formation. Finally, analyses of peptide distributions and partition free energies allowed us to quantitatively describe how clustering facilitates the accumulation of tH at the interface between ordered and disordered domains of the simulated bilayer systems. These thermodynamic insights represent some of the key elements for a comprehensive understanding of the molecular basis for the formation and stability of Ras signaling platforms.
实验表明,含有不同脂质修饰的同源 Ras 蛋白,这些修饰对于膜结合是必需的,在质膜上形成非重叠的纳米簇。然而,聚类和横向组织的物理基础仍知之甚少。我们已经开始使用 H-ras 脂质锚(tH)的粗粒度分子动力学模拟来解决这个问题,tH 是一种三脂修饰的七肽,嵌入形成域的混合脂质双层中[Janosi L.等人。美国国家科学院院刊 2012 年,109,8097]。在这里,我们使用相同的模拟方法来研究肽浓度和双层组成对 tH 聚类和横向分布的影响。我们发现,在达到一定浓度以上时,tH 的聚类行为没有明显差异。然而,模拟预测存在一个临界浓度,低于该浓度时,tH 不会形成纳米簇。此外,我们的数据表明胆固醇增强了 tH 纳米簇的稳定性,但不是其形成所必需的。最后,对肽分布和分配自由能的分析使我们能够定量描述聚类如何促进 tH 在模拟双层系统中有序域和无序域之间界面的积累。这些热力学见解是全面理解 Ras 信号平台形成和稳定性的分子基础的关键要素之一。