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周脂素2脂质结合结构域的结构与功能评估

Structural and functional assessment of perilipin 2 lipid binding domain(s).

作者信息

Najt Charles P, Lwande Joel S, McIntosh Avery L, Senthivinayagam Subramanian, Gupta Shipra, Kuhn Leslie A, Atshaves Barbara P

机构信息

Department of Biochemistry and Molecular Biology and †Department of Computer Science and Engineering, Michigan State University , East Lansing, Michigan 48824, United States.

出版信息

Biochemistry. 2014 Nov 18;53(45):7051-66. doi: 10.1021/bi500918m. Epub 2014 Nov 5.

Abstract

Although perilipin 2 (Plin2) has been shown to bind lipids with high affinity, the Plin2 lipid binding site has yet to be defined. This is of interest since Plin2's affinity for lipids has been suggested to be important for lipid droplet biogenesis and intracellular triacylglycerol accumulation. To define these regions, mouse Plin2 and several deletion mutants expressed as recombinant proteins and in mammalian cells were assessed by molecular modeling, fluorescence binding, circular dichroic, and fluorescence resonance energy transfer techniques to identify the structural and functional requirements for lipid binding. Major findings of this study indicate (1) the N-terminal PAT domain does not bind cholesterol or stearic acid; (2) Plin2 residues 119-251, containing helix α4, the α-β domain, and part of helix α6 form a Plin3-like cleft found to be important for highest affinity lipid binding; (3) both stearic acid and cholesterol interact favorably with the Plin2 cleft formed by conserved residues in helix α6 and adjacent strands, which is common to all the active lipid-binding constructs; and (4) discrete targeting of the Plin2 mutants to lipid droplets supports Plin2 containing two independent, nonoverlapping lipid droplet targeting domains in its central and C-terminal sequences. Thus, the current work reveals specific domains responsible for Plin2-lipid interactions that involves the protein's lipid binding and targeting functions.

摘要

尽管脂滴包被蛋白2(Plin2)已被证明能以高亲和力结合脂质,但Plin2的脂质结合位点尚未明确。这一点备受关注,因为有人认为Plin2对脂质的亲和力对于脂滴生物合成和细胞内三酰甘油积累很重要。为了确定这些区域,通过分子建模、荧光结合、圆二色性和荧光共振能量转移技术,对作为重组蛋白在哺乳动物细胞中表达的小鼠Plin2和几个缺失突变体进行了评估,以确定脂质结合的结构和功能要求。本研究的主要发现表明:(1)N端PAT结构域不结合胆固醇或硬脂酸;(2)Plin2的119 - 251位残基,包含α4螺旋、α-β结构域和α6螺旋的一部分,形成了一个类似于Plin3的裂隙,该裂隙对于最高亲和力的脂质结合很重要;(3)硬脂酸和胆固醇都与由α6螺旋中的保守残基和相邻链形成的Plin2裂隙有良好的相互作用,这在所有活性脂质结合构建体中都是常见的;(4)Plin2突变体对脂滴的离散靶向支持Plin2在其中心和C端序列中包含两个独立的、不重叠的脂滴靶向结构域。因此,目前的工作揭示了负责Plin2 - 脂质相互作用的特定结构域,这涉及到该蛋白的脂质结合和靶向功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b12d/4238800/7054687347c1/bi-2014-00918m_0001.jpg

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