Human mitochondrial carriers of the SLC25 family function as monomers exchanging substrates with a ping-pong kinetic mechanism.

IF 9.4 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY EMBO Journal Pub Date : 2024-08-01 Epub Date: 2024-06-27 DOI:10.1038/s44318-024-00150-0
Camila Cimadamore-Werthein, Martin S King, Denis Lacabanne, Eva Pyrihová, Stephany Jaiquel Baron, Edmund Rs Kunji
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Abstract

Members of the SLC25 mitochondrial carrier family link cytosolic and mitochondrial metabolism and support cellular maintenance and growth by transporting compounds across the mitochondrial inner membrane. Their monomeric or dimeric state and kinetic mechanism have been a matter of long-standing debate. It is believed by some that they exist as homodimers and transport substrates with a sequential kinetic mechanism, forming a ternary complex where both exchanged substrates are bound simultaneously. Some studies, in contrast, have provided evidence indicating that the mitochondrial ADP/ATP carrier (SLC25A4) functions as a monomer, has a single substrate binding site, and operates with a ping-pong kinetic mechanism, whereby ADP is imported before ATP is exported. Here we reanalyze the oligomeric state and kinetic properties of the human mitochondrial citrate carrier (SLC25A1), dicarboxylate carrier (SLC25A10), oxoglutarate carrier (SLC25A11), and aspartate/glutamate carrier (SLC25A13), all previously reported to be dimers with a sequential kinetic mechanism. We demonstrate that they are monomers, except for dimeric SLC25A13, and operate with a ping-pong kinetic mechanism in which the substrate import and export steps occur consecutively. These observations are consistent with a common transport mechanism, based on a functional monomer, in which a single central substrate-binding site is alternately accessible.

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SLC25 家族的人类线粒体载体以单体形式发挥作用,通过乒乓动力学机制交换底物。
SLC25 线粒体载体家族的成员将细胞代谢和线粒体代谢联系在一起,并通过跨线粒体内膜转运化合物来支持细胞的维持和生长。它们的单体或二聚体状态以及动力学机制一直是争论不休的问题。一些人认为,它们以同二聚体形式存在,以顺序动力学机制运输底物,形成一个三元复合物,其中同时结合两种交换底物。相反,一些研究提供的证据表明,线粒体 ADP/ATP 载体(SLC25A4)以单体形式存在,只有一个底物结合位点,并以乒乓动力学机制运行,即在输出 ATP 之前先输入 ADP。在这里,我们重新分析了人类线粒体柠檬酸盐载体(SLC25A1)、二羧酸盐载体(SLC25A10)、氧谷氨酸盐载体(SLC25A11)和天冬氨酸盐/谷氨酸盐载体(SLC25A13)的寡聚状态和动力学特性。我们证明,除了二聚体 SLC25A13 外,它们都是单体,并以乒乓动力学机制运行,其中底物的导入和导出步骤连续发生。这些观察结果与一种基于功能单体的常见转运机制相一致,在这种机制中,单个中心底物结合位点可交替访问。
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来源期刊
EMBO Journal
EMBO Journal 生物-生化与分子生物学
CiteScore
18.90
自引率
0.90%
发文量
246
审稿时长
1.5 months
期刊介绍: The EMBO Journal has stood as EMBO's flagship publication since its inception in 1982. Renowned for its international reputation in quality and originality, the journal spans all facets of molecular biology. It serves as a platform for papers elucidating original research of broad general interest in molecular and cell biology, with a distinct focus on molecular mechanisms and physiological relevance. With a commitment to promoting articles reporting novel findings of broad biological significance, The EMBO Journal stands as a key contributor to advancing the field of molecular biology.
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