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Crystal structure of human P32, a doughnut-shaped acidic mitochondrial matrix protein

机译:人环型酸性线粒体基质蛋白P32的晶体结构

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摘要

Human p32 (also known as SF2.associated p32, P32/TAP, and gCIqR) is a conserved eukaryotic protein that localizes predominantly in the mitochondrial matrix. It is thought to be involved in mitochondrial oxidative phosphorylation and in nucleus-mitochondrion interactionos. We report the crystal structure of p32 determined at 2.25 A resolution. The structure reveals that p32 adopts a novel fold with seven consecutive antiparallel beta-strands flanked by one N-terminal and two C-terminal alpha-helices. Three monomers form a doughnut-shaped quaternary structure with an unusually asymmetric charge distribution on the surface. The implications of the structure on previously proposed functions of p32 are discussed and new specific functional properties are suggested.
机译:人p32(也称为SF2相关的p32,P32 / TAP和gCIqR)是一种保守的真核蛋白,主要位于线粒体基质中。人们认为它参与了线粒体的氧化磷酸化和细胞核-线粒体的相互作用。我们报告在2.25 A分辨率下确定的p32的晶体结构。该结构显示p32采用了一种新颖的折叠方式,具有七个连续的反平行β链,两侧是一个N末端和两个C末端的α螺旋。三种单体形成一个环形的四元结构,其表面上具有异常不对称的电荷分布。讨论了该结构对先前提出的p32功能的影响,并提出了新的特定功能特性。

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