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霍乱弧菌中一种钠离子依赖性二羧酸转运蛋白的功能特性

Functional characterization of a Na+-dependent dicarboxylate transporter from Vibrio cholerae.

作者信息

Mulligan Christopher, Fitzgerald Gabriel A, Wang Da-Neng, Mindell Joseph A

机构信息

Membrane Transport Biophysics Section, Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892.

The Helen L. and Martin Kimmel Center for Biology and Medicine, Skirball Institute of Biomolecular Medicine and Department of Cell Biology, New York University School of Medicine, New York, NY 10016 The Helen L. and Martin Kimmel Center for Biology and Medicine, Skirball Institute of Biomolecular Medicine and Department of Cell Biology, New York University School of Medicine, New York, NY 10016.

出版信息

J Gen Physiol. 2014 Jun;143(6):745-59. doi: 10.1085/jgp.201311141. Epub 2014 May 12.

Abstract

The SLC13 transporter family, whose members play key physiological roles in the regulation of fatty acid synthesis, adiposity, insulin resistance, and other processes, catalyzes the transport of Krebs cycle intermediates and sulfate across the plasma membrane of mammalian cells. SLC13 transporters are part of the divalent anion:Na(+) symporter (DASS) family that includes several well-characterized bacterial members. Despite sharing significant sequence similarity, the functional characteristics of DASS family members differ with regard to their substrate and coupling ion dependence. The publication of a high resolution structure of dimer VcINDY, a bacterial DASS family member, provides crucial structural insight into this transporter family. However, marrying this structural insight to the current functional understanding of this family also demands a comprehensive analysis of the transporter's functional properties. To this end, we purified VcINDY, reconstituted it into liposomes, and determined its basic functional characteristics. Our data demonstrate that VcINDY is a high affinity, Na(+)-dependent transporter with a preference for C4- and C5-dicarboxylates. Transport of the model substrate, succinate, is highly pH dependent, consistent with VcINDY strongly preferring the substrate's dianionic form. VcINDY transport is electrogenic with succinate coupled to the transport of three or more Na(+) ions. In contrast to succinate, citrate, bound in the VcINDY crystal structure (in an inward-facing conformation), seems to interact only weakly with the transporter in vitro. These transport properties together provide a functional framework for future experimental and computational examinations of the VcINDY transport mechanism.

摘要

SLC13转运蛋白家族的成员在脂肪酸合成、肥胖、胰岛素抵抗及其他过程的调节中发挥关键生理作用,催化三羧酸循环中间体和硫酸盐跨哺乳动物细胞膜的转运。SLC13转运蛋白是二价阴离子:Na(+)共转运体(DASS)家族的一部分,该家族包括几个特性明确的细菌成员。尽管序列相似度很高,但DASS家族成员的功能特性在底物和偶联离子依赖性方面存在差异。细菌DASS家族成员二聚体VcINDY的高分辨率结构的发表,为这个转运蛋白家族提供了关键的结构见解。然而,将这种结构见解与目前对该家族的功能理解相结合,还需要对转运蛋白的功能特性进行全面分析。为此,我们纯化了VcINDY,将其重组到脂质体中,并确定了其基本功能特性。我们的数据表明,VcINDY是一种高亲和力、Na(+)依赖性的转运蛋白,偏好C4和C5二羧酸盐。模型底物琥珀酸的转运高度依赖pH值,这与VcINDY强烈偏好底物的二价阴离子形式一致。VcINDY的转运是生电的,琥珀酸与三个或更多Na(+)离子的转运偶联。与琥珀酸不同,结合在VcINDY晶体结构中的柠檬酸(向内的构象)在体外似乎与转运蛋白的相互作用很弱。这些转运特性共同为未来对VcINDY转运机制进行实验和计算研究提供了功能框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae8/4035743/fd1b906ba42f/JGP_201311141_Fig1.jpg

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