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模拟混合双层膜上MLKL蛋白-脂质相互作用的分子指纹图谱。

Modeling the molecular fingerprint of protein-lipid interactions of MLKL on complex bilayers.

作者信息

Ramirez Ricardo X, Campbell Oluwatoyin, Pradhan Apoorva J, Atilla-Gokcumen G Ekin, Monje-Galvan Viviana

机构信息

Department of Chemical and Biological Engineering, School of Engineering and Applied Sciences, University at Buffalo, Buffalo, NY, United States.

Department of Chemistry, College of Arts and Sciences, University at Buffalo, Buffalo, NY, United States.

出版信息

Front Chem. 2023 Jan 12;10:1088058. doi: 10.3389/fchem.2022.1088058. eCollection 2022.

Abstract

Lipids, the structural part of membranes, play important roles in biological functions. However, our understanding of their implication in key cellular processes such as cell division and protein-lipid interaction is just emerging. This is the case for molecular interactions in mechanisms of cell death, where the role of lipids for protein localization and subsequent membrane permeabilization is key. For example, during the last stage of necroptosis, the mixed lineage kinase domain-like (MLKL) protein translocates and, eventually, permeabilizes the plasma membrane (PM). This process results in the leakage of cellular content, inducing an inflammatory response in the microenvironment that is conducive to oncogenesis and metastasis, among other pathologies that exhibit inflammatory activity. This work presents insights from long all-atom molecular dynamics (MD) simulations of complex membrane models for the PM of mammalian cells with an MLKL protein monomer. Our results show that the binding of the protein is initially driven by the electrostatic interactions of positively charged residues. The protein bound conformation modulates lipid recruitment to the binding site, which changes the local lipid environment recruiting PIP lipids and cholesterol, generating a unique fingerprint. These results increase our knowledge of protein-lipid interactions at the membrane interface in the context of molecular mechanisms of the necroptotic pathway, currently under investigation as a potential treatment target in cancer and inflamatory diseases.

摘要

脂质作为细胞膜的结构组成部分,在生物学功能中发挥着重要作用。然而,我们对其在细胞分裂和蛋白质 - 脂质相互作用等关键细胞过程中的作用的理解才刚刚开始。细胞死亡机制中的分子相互作用就是如此,其中脂质在蛋白质定位和随后的膜通透性方面的作用至关重要。例如,在坏死性凋亡的最后阶段,混合谱系激酶结构域样(MLKL)蛋白发生易位,并最终使质膜(PM)通透性增加。这一过程导致细胞内容物泄漏,在微环境中引发炎症反应,从而有利于肿瘤发生和转移,以及其他表现出炎症活性的病理过程。这项工作展示了对含有MLKL蛋白单体的哺乳动物细胞质膜复杂膜模型进行长时间全原子分子动力学(MD)模拟的见解。我们的结果表明,蛋白质的结合最初是由带正电残基的静电相互作用驱动的。蛋白质结合构象调节脂质向结合位点的募集,这改变了局部脂质环境,募集磷脂酰肌醇磷酸(PIP)脂质和胆固醇,产生独特的特征。这些结果增加了我们在坏死性凋亡途径分子机制背景下对膜界面蛋白质 - 脂质相互作用的认识,目前坏死性凋亡途径正作为癌症和炎症性疾病的潜在治疗靶点进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5502/9877227/e2605e3796a9/fchem-10-1088058-g001.jpg

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