The peculiar properties of mitochondrial carriers of the SLC25 family.

IF 4.3 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Edmund R S Kunji,Vasiliki Mavridou,Martin S King,Camila Cimadamore-Werthein,Stephany Jaiquel Baron,Scott A Jones,Alannah C King,Roger Springett,Deepak Chand,Shane M Palmer,Denis Lacabanne,Sotiria Tavoulari,Jonathan J Ruprecht
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引用次数: 0

Abstract

With 53 members, the SLC25 mitochondrial carriers form the largest solute carrier family in humans. They transport a wide variety of substrates across the mitochondrial inner membrane to generate chemical energy and to supply molecules and ions for growth and maintenance of cells. They are among the smallest transporters in nature, yet they translocate some of the largest molecules without proton leak. With one exception, they are monomeric and have an unusual three-fold pseudo-symmetric structure. These carriers also have a unique transport mechanism, which is facilitated by six structural elements, meaning that all transmembrane helices move separately, but in a co-ordinated way. In addition, there are three functional elements that are an integral part of the alternating access mechanism, which opens and closes the carrier to the mitochondrial matrix or the intermembrane space. The first is a matrix gate, comprising the matrix salt bridge network and glutamine braces on transmembrane helices H1, H3 and H5. The second is a cytoplasmic gate, containing the cytoplasmic salt bridge network and tyrosine braces on transmembrane helices H2, H4 and H6. The third functional element is a single central substrate-binding site, the access to which is controlled by the opening and closing of the two gates in an alternating way. The electrostatic properties of the binding site facilitate the exchange of charged substrates across the inner membrane in the presence of a high membrane potential. Here, we discuss the extraordinary features of mitochondrial carriers, providing new insights into one of the most complex and dynamic transport mechanisms in nature.
SLC25家族线粒体载体的特殊性质。
SLC25线粒体载体有53个成员,构成了人类最大的溶质载体家族。它们通过线粒体内膜运输各种各样的底物,产生化学能,并为细胞的生长和维持提供分子和离子。它们是自然界中最小的转运体之一,但它们可以转运一些最大的分子而不发生质子泄漏。除了一个例外,它们是单体的,具有不寻常的三重伪对称结构。这些载体也有独特的运输机制,这是由六个结构元素促进的,这意味着所有的跨膜螺旋分别移动,但以协调的方式移动。此外,还有三个功能元件是交替通路机制的组成部分,它们可以打开和关闭载体到线粒体基质或膜间空间。第一个是基质门,由基质盐桥网络和跨膜螺旋H1、H3和H5上的谷氨酰胺支架组成。第二个是细胞质门,包含细胞质盐桥网和跨膜螺旋H2、H4和H6上的酪氨酸支架。第三个功能元素是一个单一的中心底物结合位点,通过交替打开和关闭两个门来控制其进入。结合位点的静电特性在高膜电位存在的情况下促进了带电荷底物在细胞膜上的交换。在这里,我们讨论了线粒体载体的非凡特征,为自然界中最复杂和动态的运输机制之一提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemical Journal
Biochemical Journal 生物-生化与分子生物学
CiteScore
8.00
自引率
0.00%
发文量
255
审稿时长
1 months
期刊介绍: Exploring the molecular mechanisms that underpin key biological processes, the Biochemical Journal is a leading bioscience journal publishing high-impact scientific research papers and reviews on the latest advances and new mechanistic concepts in the fields of biochemistry, cellular biosciences and molecular biology. The Journal and its Editorial Board are committed to publishing work that provides a significant advance to current understanding or mechanistic insights; studies that go beyond observational work using in vitro and/or in vivo approaches are welcomed. Painless publishing: All papers undergo a rigorous peer review process; however, the Editorial Board is committed to ensuring that, if revisions are recommended, extra experiments not necessary to the paper will not be asked for. Areas covered in the journal include: Cell biology Chemical biology Energy processes Gene expression and regulation Mechanisms of disease Metabolism Molecular structure and function Plant biology Signalling
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