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肌球蛋白胞质部分的结构和 STAS 结构域在 SLC26/SulP 阴离子转运体中的功能作用。

Structure of the cytosolic portion of the motor protein prestin and functional role of the STAS domain in SLC26/SulP anion transporters.

机构信息

Department of Chemical Sciences, University of Padua, via Marzolo 1, 35131 Padua, Italy.

出版信息

J Mol Biol. 2010 Jul 16;400(3):448-62. doi: 10.1016/j.jmb.2010.05.013. Epub 2010 May 21.

Abstract

Prestin is the motor protein responsible for the somatic electromotility of cochlear outer hair cells and is essential for normal hearing sensitivity and frequency selectivity of mammals. Prestin is a member of mammalian solute-linked carrier 26 (SLC26) anion exchangers, a family of membrane proteins capable of transporting a wide variety of monovalent and divalent anions. SLC26 transporters play important roles in normal human physiology in different tissues, and many of them are involved in genetic diseases. SLC26 and related SulP transporters carry a hydrophobic membrane core and a C-terminal cytosolic portion that is essential in plasma membrane targeting and protein function. This C-terminal portion is mainly composed of a STAS (sulfate transporters and anti-sigma factor antagonist) domain, whose name is due to a remote but significant sequence similarity with bacterial ASA (anti-sigma factor antagonist) proteins. Here we present the crystal structure at 1.57 A resolution of the cytosolic portion of prestin, the first structure of a SulP transporter STAS domain, and its characterization in solution by heteronuclear multidimensional NMR spectroscopy. Prestin STAS significantly deviates from the related bacterial ASA proteins, especially in the N-terminal region, which-although previously considered merely as a generic linker between the domain and the last transmembrane helix-is indeed fully part of the domain. Hence, unexpectedly, our data reveal that the STAS domain starts immediately after the last transmembrane segment and lies beneath the lipid bilayer. A structure-function analysis suggests that this model can be a general template for most SLC26 and SulP anion transporters and supports the notion that STAS domains are involved in functionally important intramolecular and intermolecular interactions. Mapping of disease-associated or functionally harmful mutations on STAS structure indicates that they can be divided into two categories: those causing significant misfolding of the domain and those altering its interaction properties.

摘要

Prestin 是负责耳蜗外毛细胞体电动性的运动蛋白,对于哺乳动物的正常听力敏感度和频率选择性至关重要。 Prestin 是哺乳动物溶质载体 26(SLC26)阴离子交换器的成员,这是一类能够转运多种单价和二价阴离子的膜蛋白。 SLC26 转运蛋白在不同组织的正常人体生理学中发挥着重要作用,其中许多与遗传疾病有关。 SLC26 和相关的 SulP 转运蛋白携带疏水的膜核心和 C 末端胞质部分,这对于质膜靶向和蛋白功能至关重要。该 C 末端部分主要由 STAS(硫酸盐转运蛋白和抗 sigma 因子拮抗剂)结构域组成,其名称是由于与细菌 ASA(抗 sigma 因子拮抗剂)蛋白具有远程但显著的序列相似性。在这里,我们以 1.57 A 的分辨率呈现了 prestin 的胞质部分的晶体结构,这是 SulP 转运蛋白 STAS 结构域的第一个结构,以及通过异核多维 NMR 光谱在溶液中的表征。 Prestin STAS 与相关的细菌 ASA 蛋白明显不同,特别是在 N 末端区域,尽管该区域先前被认为仅是结构域和最后一个跨膜螺旋之间的通用接头,但实际上它完全是结构域的一部分。因此,出乎意料的是,我们的数据表明,STAS 结构域立即在最后一个跨膜片段之后开始,并位于脂质双层下方。结构-功能分析表明,该模型可以作为大多数 SLC26 和 SulP 阴离子转运蛋白的通用模板,并支持 STAS 结构域参与功能重要的分子内和分子间相互作用的观点。 STAS 结构上与疾病相关或功能有害的突变的映射表明,它们可以分为两类:导致结构域严重错误折叠的突变和改变其相互作用特性的突变。

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