Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California, United States of America.
PLoS Comput Biol. 2013;9(7):e1003156. doi: 10.1371/journal.pcbi.1003156. Epub 2013 Jul 25.
Group VI Ca²⁺-independent phospholipase A₂ (iPLA₂) is a water-soluble enzyme that is active when associated with phospholipid membranes. Despite its clear pharmaceutical relevance, no X-ray or NMR structural information is currently available for the iPLA₂ or its membrane complex. In this paper, we combine homology modeling with coarse-grained (CG) and all-atom (AA) molecular dynamics (MD) simulations to build structural models of iPLA₂ in association with a phospholipid bilayer. CG-MD simulations of the membrane insertion process were employed to provide a starting point for an atomistic description. Six AA-MD simulations were then conducted for 60 ns, starting from different initial CG structures, to refine the membrane complex. The resulting structures are shown to be consistent with each other and with deuterium exchange mass spectrometry (DXMS) experiments, suggesting that our approach is suitable for the modeling of iPLA₂ at the membrane surface. The models show that an anchoring region (residues 710-724) forms an amphipathic helix that is stabilized by the membrane. In future studies, the proposed iPLA₂ models should provide a structural basis for understanding the mechanisms of lipid extraction and drug-inhibition. In addition, the dual-resolution approach discussed here should provide the means for the future exploration of the impact of lipid diversity and sequence mutations on the activity of iPLA₂ and related enzymes.
VI 组钙离子非依赖性磷脂酶 A₂(iPLA₂)是一种水溶性酶,当与磷脂膜结合时具有活性。尽管它具有明显的药物相关性,但目前尚无关于 iPLA₂或其膜复合物的 X 射线或 NMR 结构信息。在本文中,我们将同源建模与粗粒(CG)和全原子(AA)分子动力学(MD)模拟相结合,构建与磷脂双层结合的 iPLA₂结构模型。采用 CG-MD 模拟膜插入过程,为原子描述提供起点。然后,从不同的初始 CG 结构开始进行 6 个 AA-MD 模拟,持续 60ns,以细化膜复合物。结果表明,所得结构彼此一致,并且与氘交换质谱(DXMS)实验一致,表明我们的方法适用于在膜表面对 iPLA₂进行建模。这些模型表明,一个锚定区域(残基 710-724)形成一个两亲性螺旋,由膜稳定。在未来的研究中,所提出的 iPLA₂模型应该为理解脂质提取和药物抑制的机制提供结构基础。此外,这里讨论的双分辨率方法应该为未来探索脂质多样性和序列突变对 iPLA₂和相关酶活性的影响提供手段。