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线粒体载体家族的结构研究方法

Structural approaches of the mitochondrial carrier family.

作者信息

Nury Hugues, Blesneac Iulia, Ravaud Stephanie, Pebay-Peyroula Eva

机构信息

Institut Pasteur, Unit if Structural Dynamics of Macromolecules, CNRS, URA 2185, Paris, France.

出版信息

Methods Mol Biol. 2010;654:105-17. doi: 10.1007/978-1-60761-762-4_6.

Abstract

The transport of solutes across the inner mitochondrial membrane is highly selective and necessitates membrane proteins mainly from the mitochondrial carrier family (MCF). These carriers are required for the transport of a variety of metabolites implicated in all the important processes occurring within the mitochondrial matrix. Due to its high abundance, the ADP/ATP carrier (AAC) is the member of the family that was studied most. It is the first mitochondrial carrier for which a high-resolution X-ray structure is known. The carrier was crystallized in the presence of a strong inhibitor, the carboxyatractyloside (CATR). The structure gives an insight not only into the overall fold of mitochondrial carriers in general but also into atomic details of the AAC in a conformation that is open toward the intermembrane space (IMS). Molecular dynamics simulations indicate the first events occurring to the carrier after the binding of ADP. A careful analysis of the primary sequences of all the carriers in light with the structure highlights properties of the protein that are related to the substrate.

摘要

溶质穿过线粒体内膜的运输具有高度选择性,且主要需要来自线粒体载体家族(MCF)的膜蛋白。这些载体对于参与线粒体基质内所有重要过程的各种代谢物的运输是必需的。由于其高丰度,ADP/ATP载体(AAC)是该家族中研究最多的成员。它是第一个已知高分辨率X射线结构的线粒体载体。该载体在强抑制剂羧基苍术苷(CATR)存在下结晶。该结构不仅让我们深入了解了一般线粒体载体的整体折叠情况,还揭示了处于朝向膜间隙(IMS)开放构象的AAC的原子细节。分子动力学模拟表明了ADP结合后载体发生的最初事件。结合该结构对所有载体的一级序列进行仔细分析,突出了与底物相关的蛋白质特性。

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