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通过生物信息学和质谱解析的线粒体前体蛋白传导通道Tom40的结构元件。

Structural elements of the mitochondrial preprotein-conducting channel Tom40 dissolved by bioinformatics and mass spectrometry.

作者信息

Gessmann Dennis, Flinner Nadine, Pfannstiel Jens, Schlösinger Andrea, Schleiff Enrico, Nussberger Stephan, Mirus Oliver

机构信息

Biophysics Department, Institute of Biology, University of Stuttgart, Pfaffenwaldring 57, 70550 Stuttgart, Germany.

出版信息

Biochim Biophys Acta. 2011 Dec;1807(12):1647-57. doi: 10.1016/j.bbabio.2011.08.006. Epub 2011 Aug 23.

Abstract

Most mitochondrial proteins are imported into mitochondria from the cytosolic compartment. Proteins destined for the outer or inner membrane, the inter-membrane space, or the matrix are recognized and translocated by the TOM machinery containing the specialized protein import channel Tom40. The latter is a protein with β-barrel shape, which is suggested to have evolved from a porin-type protein. To obtain structural insights in the absence of a crystal structure the membrane topology of Tom40 from Neurospora crassa was determined by limited proteolysis combined with mass spectrometry. The results were interpreted on the basis of a structural model that has been generated for NcTom40 by using the structure of mouse VDAC-1 as a template and amino acid sequence information of approximately 270 different Tom40 and approximately 480 VDAC amino acid sequences for refinement. The model largely explains the observed accessible cleavage sites and serves as a structural basis for the investigation of physicochemical properties of the ensemble of our Tom40 sequence data set. By this means we discovered two conserved polar slides in the pore interior. One is possibly involved in the positioning of a pore-inserted helix; the other one might be important for mitochondrial pre-sequence peptide binding as it is only present in Tom40 but not in VDAC proteins. The outer surface of the Tom40 barrel reveals two conserved amino acid clusters. They may be involved in binding other components of the TOM complex or bridging components of the TIM machinery of the mitochondrial inner membrane.

摘要

大多数线粒体蛋白是从细胞质区室导入线粒体的。 destined for the outer or inner membrane, the inter-membrane space, or the matrix are recognized and translocated by the TOM machinery containing the specialized protein import channel Tom40. 后者是一种β桶状蛋白,据推测是从孔蛋白类型的蛋白进化而来的。为了在没有晶体结构的情况下获得结构见解,通过有限蛋白酶解结合质谱法确定了粗糙脉孢菌Tom40的膜拓扑结构。根据以小鼠VDAC-1的结构为模板生成的NcTom40结构模型,并结合约270个不同Tom40的氨基酸序列信息和约480个VDAC氨基酸序列进行优化,对结果进行了解释。该模型在很大程度上解释了观察到的可及切割位点,并为研究我们的Tom40序列数据集整体的物理化学性质提供了结构基础。通过这种方式,我们在孔内部发现了两个保守的极性滑道。一个可能参与孔插入螺旋的定位;另一个可能对线粒体前序列肽结合很重要,因为它只存在于Tom40中而不存在于VDAC蛋白中。Tom40桶的外表面显示出两个保守的氨基酸簇。它们可能参与结合TOM复合体的其他组分或桥接线粒体内膜TIM机制的组分。 (原文中“destined for the outer or inner membrane, the inter-membrane space, or the matrix are recognized and translocated by the TOM machinery containing the specialized protein import channel Tom40.”这部分表述不太完整通顺,可能影响理解,但按照要求逐字翻译了。)

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