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人胆固醇转运蛋白 STARD4 的膜特异性。

Membrane specificity of the human cholesterol transfer protein STARD4.

机构信息

Department of Chemistry, University of Bergen, Bergen 5020, Norway; Computational Biology Unit, Department of Informatics, University of Bergen, Bergen 5020, Norway.

Department of Cellular Physiology and Metabolism, Faculty of Medicine, University of Geneva, Geneva, Switzerland; Diabetes Center, Faculty of Medicine, University of Geneva, Geneva, Switzerland.

出版信息

J Mol Biol. 2024 Jun 1;436(11):168572. doi: 10.1016/j.jmb.2024.168572. Epub 2024 Apr 12.

Abstract

STARD4 regulates cholesterol homeostasis by transferring cholesterol between the plasma membrane and endoplasmic reticulum. The STARD4 structure features a helix-grip fold surrounding a large hydrophobic cavity holding the sterol. Its access is controlled by a gate formed by the Ω1 and Ω4 loops and the C-terminal α-helix. Little is known about the mechanisms by which STARD4 binds to membranes and extracts/releases cholesterol. All available structures of STARD4 are without a bound sterol and display the same closed conformation of the gate. The cholesterol transfer activity of the mouse STARD4 is enhanced in the presence of anionic lipids, and in particular of phosphatidylinositol biphosphates (PIP2) for which two binding sites were proposed on the mouse STARD4 surface. Yet only one of these sites is conserved in human STARD4. We here report the results of a liposome microarray-based assay and microseconds-long molecular dynamics simulations of human STARD4 with complex lipid bilayers mimicking the composition of the donor and acceptor membranes. We show that the binding of apo form of human STARD4 is sensitive to the presence of PIP2 through two specific binding sites, one of which was not identified on mouse STARD4. We report two novel conformations of the gate in holo-STARD4: a yet-unobserved close conformation and an open conformation of Ω4 shedding light on the opening/closure mechanism needed for cholesterol uptake/release. Overall, the modulation of human STARD4 membrane-binding by lipid composition, and by the presence of the cargo supports the capacity of human STARD4 to achieve directed transfer between specific organelle membranes.

摘要

STARD4 通过在质膜和内质网之间转移胆固醇来调节胆固醇稳态。STARD4 的结构特征是一个围绕着含有固醇的大疏水性腔的螺旋夹折叠。其进入由 Ω1 和 Ω4 环和 C 末端α螺旋形成的门控控制。关于 STARD4 与膜结合并提取/释放胆固醇的机制知之甚少。所有可用的 STARD4 结构都没有结合的固醇,并且显示出相同的门控封闭构象。在阴离子脂质,特别是双磷酸磷脂酰肌醇(PIP2)的存在下,鼠 STARD4 的胆固醇转移活性增强,并且在鼠 STARD4 表面上提出了两个结合位点。然而,这些位点中只有一个在人 STARD4 中保守。我们在这里报告了基于脂质体微阵列的测定结果和人 STARD4 与模拟供体和受体膜组成的复合脂质双层的微秒长分子动力学模拟的结果。我们表明,apo 形式的人 STARD4 的结合对 PIP2 的存在敏感,通过两个特异性结合位点,其中一个在鼠 STARD4 上未被鉴定。我们报告了 holo-STARD4 中门控的两种新构象:尚未观察到的紧密构象和 Ω4 的开放构象,这阐明了胆固醇摄取/释放所需的打开/关闭机制。总体而言,脂质组成和货物的存在对人 STARD4 膜结合的调节支持人 STARD4 在特定细胞器膜之间进行定向转移的能力。

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