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来自……的非特异性脂质转移蛋白疏水腔内脂质置换的动力学

Dynamics of lipid displacement inside the hydrophobic cavity of a nonspecific lipid transfer protein from .

作者信息

Madni Zaid Kamal, Kumar Amit, Kumar Ujjwal, Jaiswal Deepika, Salunke Dinakar M

机构信息

Structural Biology Lab, Regional Centre for Biotechnology, NCR Biotech Science Cluster, Faridabad, India.

Structural Immunology Group, International Centre for Genetic Engineering and Biotechnology, New Delhi, India.

出版信息

J Biomol Struct Dyn. 2023 Jul-Aug;41(12):5839-5849. doi: 10.1080/07391102.2022.2097956. Epub 2022 Jul 15.

DOI:10.1080/07391102.2022.2097956
PMID:35838149
Abstract

Nonspecific lipid transfer proteins are multifunctional and multispecific seed proteins with a characteristic hydrophobic cavity that runs form N-terminal to the C-terminal end. They are capable of binding and transferring different lipid molecules by means of their hydrophobic cavity. Apart from the cavity, lipid molecules bind and interact at key positions on the nsLTP surface as well. The plasticity of the hydrophobic cavity is an unusual property, considered as the primary lipid binding site. Here, we report a crystal structure of nsLTP from with two lauric acid molecules bound inside the cavity. It has been observed that the extent of the N-terminal entry point and plasticity of the cavity can be extended, upon binding of one or two lipid molecules inside the cavity. The MD simulation further revealed that the lipid molecule shows high mobility inside the cavity and interestingly, was able to change its orientation. An alternate lipid entry site adjacent to the N-terminal end was uncovered during simulation and Arg-84 was implicated to be a potential regulatory residue aside from Tyr-59. Collectively, this study helps to understand that changes in orientation of the lipid inside the cavity could occur intermittently besides entering the cavity via tail-in-mechanism.Communicated by Ramaswamy H. Sarma.

摘要

非特异性脂质转移蛋白是多功能和多特异性的种子蛋白,具有一个从N端延伸至C端的特征性疏水腔。它们能够通过其疏水腔结合并转移不同的脂质分子。除了该腔之外,脂质分子还会在nsLTP表面的关键位置结合并相互作用。疏水腔的可塑性是一种不寻常的特性,被视为主要的脂质结合位点。在此,我们报道了来自[具体来源未提及]的nsLTP的晶体结构,其腔内结合有两个月桂酸分子。据观察,当腔内结合一个或两个脂质分子时,N端入口点的范围和腔的可塑性可以扩展。分子动力学模拟进一步揭示,脂质分子在腔内表现出高流动性,有趣的是,它能够改变其方向。在模拟过程中发现了一个与N端相邻的备用脂质进入位点,并且除了Tyr-59之外,Arg-84被认为是一个潜在的调节残基。总体而言,这项研究有助于理解脂质在腔内除了通过尾先入机制进入之外,其方向的变化可能会间歇性地发生。由Ramaswamy H. Sarma传达。

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