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通过结合交联技术结合质谱和分子动力学方法研究载脂蛋白 E4 的结构及其受体结合机制。

Lipidated apolipoprotein E4 structure and its receptor binding mechanism determined by a combined cross-linking coupled to mass spectrometry and molecular dynamics approach.

机构信息

Center for Structural Biology and Bioinformatics, Structure and Function of Biological Membranes, Faculté des Sciences, Université Libre de Bruxelles (ULB), Brussels, Belgium.

Department of Biology, Institute of Molecular Systems Biology, ETH Zurich, Zurich, Switzerland.

出版信息

PLoS Comput Biol. 2018 Jun 22;14(6):e1006165. doi: 10.1371/journal.pcbi.1006165. eCollection 2018 Jun.

Abstract

Apolipoprotein E (apoE) is a forefront actor in the transport of lipids and the maintenance of cholesterol homeostasis, and is also strongly implicated in Alzheimer's disease. Upon lipid-binding apoE adopts a conformational state that mediates the receptor-induced internalization of lipoproteins. Due to its inherent structural dynamics and the presence of lipids, the structure of the biologically active apoE remains so far poorly described. To address this issue, we developed an innovative hybrid method combining experimental data with molecular modeling and dynamics to generate comprehensive models of the lipidated apoE4 isoform. Chemical cross-linking combined with mass spectrometry provided distance restraints, characterizing the three-dimensional organization of apoE4 molecules at the surface of lipidic nanoparticles. The ensemble of spatial restraints was then rationalized in an original molecular modeling approach to generate monomeric models of apoE4 that advocated the existence of two alternative conformations. These two models point towards an activation mechanism of apoE4 relying on a regulation of the accessibility of its receptor binding region. Further, molecular dynamics simulations of the dimerized and lipidated apoE4 monomeric conformations revealed an elongation of the apoE N-terminal domain, whereby helix 4 is rearranged, together with Arg172, into a proper orientation essential for lipoprotein receptor association. Overall, our results show how apoE4 adapts its conformation for the recognition of the low density lipoprotein receptor and we propose a novel mechanism of activation for apoE4 that is based on accessibility and remodeling of the receptor binding region.

摘要

载脂蛋白 E(apoE)是脂质运输和胆固醇稳态维持的前沿分子,也与阿尔茨海默病密切相关。apoE 在与脂质结合后会发生构象变化,从而介导脂蛋白与受体的内吞作用。由于其固有结构动力学和脂质的存在,生物活性 apoE 的结构至今仍未得到充分描述。为了解决这个问题,我们开发了一种创新的混合方法,将实验数据与分子建模和动力学相结合,生成富含脂质的 apoE4 异构体的综合模型。化学交联与质谱联用提供了距离约束,描述了脂质纳米颗粒表面 apoE4 分子的三维结构。然后,通过一种原始的分子建模方法对空间约束进行综合,生成 apoE4 的单体模型,该模型支持两种替代构象的存在。这两种模型指向了 apoE4 的激活机制,依赖于其受体结合区域的可及性调节。此外,对二聚化和富含脂质的 apoE4 单体构象的分子动力学模拟揭示了 apoE N 端结构域的伸长,由此,螺旋 4 与 Arg172 一起重新排列成与脂蛋白受体结合所必需的正确取向。总的来说,我们的结果表明 apoE4 如何为识别低密度脂蛋白受体而调整其构象,并提出了一种基于受体结合区域可及性和重塑的 apoE4 激活新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b869/6033463/e1234c24868e/pcbi.1006165.g001.jpg

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