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人类线粒体DNA核小体的分层结构。

The layered structure of human mitochondrial DNA nucleoids.

作者信息

Bogenhagen Daniel F, Rousseau Denis, Burke Stephanie

机构信息

Department of Pharmacological Sciences, State University of New York at Stony Brook, Stony Brook, New York 11794-8651.

Laboratoire Biochimie et Biophysique des Systèmes Intégrés p438B, Institut de Recherches en Technologies et Sciences pour le Vivant, UMR5092 CNRS-UJF-CEA-Grenoble, 17 Rue des Martyrs, 38054 Grenoble Cedex 09, France.

出版信息

J Biol Chem. 2008 Feb 8;283(6):3665-3675. doi: 10.1074/jbc.M708444200. Epub 2007 Dec 6.

Abstract

Mitochondrial DNA (mtDNA) occurs in cells in nucleoids containing several copies of the genome. Previous studies have identified proteins associated with these large DNA structures when they are biochemically purified by sedimentation and immunoaffinity chromatography. In this study, formaldehyde cross-linking was performed to determine which nucleoid proteins are in close contact with the mtDNA. A set of core nucleoid proteins is found in both native and cross-linked nucleoids, including 13 proteins with known roles in mtDNA transactions. Several other metabolic proteins and chaperones identified in native nucleoids, including ATAD3, were not observed to cross-link to mtDNA. Additional immunofluorescence and protease susceptibility studies showed that an N-terminal domain of ATAD3 previously proposed to bind to the mtDNA D-loop is directed away from the mitochondrial matrix, so it is unlikely to interact with mtDNA in vivo. These results are discussed in relation to a model for a layered structure of mtDNA nucleoids in which replication and transcription occur in the central core, whereas translation and complex assembly may occur in the peripheral region.

摘要

线粒体DNA(mtDNA)存在于细胞中的类核体中,每个类核体含有多个基因组拷贝。先前的研究通过沉降和免疫亲和层析对这些大型DNA结构进行生化纯化时,鉴定出了与它们相关的蛋白质。在本研究中,进行了甲醛交联以确定哪些类核体蛋白与mtDNA紧密接触。在天然和交联的类核体中都发现了一组核心类核体蛋白,包括13种在mtDNA事务中具有已知作用的蛋白质。在天然类核体中鉴定出的其他几种代谢蛋白和伴侣蛋白,包括ATAD3,未观察到与mtDNA交联。额外的免疫荧光和蛋白酶敏感性研究表明,先前提出的ATAD3的一个N端结构域与mtDNA D环结合,但该结构域远离线粒体基质,因此在体内不太可能与mtDNA相互作用。结合mtDNA类核体分层结构模型讨论了这些结果,在该模型中,复制和转录发生在中央核心,而翻译和复合物组装可能发生在外围区域。

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