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首页> 外文期刊>Molecular biology of the cell >The Mitochondrial Transcription Factor TFAM Coordinates the Assembly of Multiple DNA Molecules into Nucleoid-like Structures
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The Mitochondrial Transcription Factor TFAM Coordinates the Assembly of Multiple DNA Molecules into Nucleoid-like Structures

机译:线粒体转录因子TFAM将多个DNA分子组装成类核结构。

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摘要

Packaging DNA into condensed structures is integral to the transmission of genomes. The mammalian mitochondrial genome (mtDNA) is a high copy, maternally inherited genome in which mutations cause a variety of multisystem disorders. In all eukaryotic cells, multiple mtDNAs are packaged with protein into spheroid bodies called nucleoids, which are the fundamental units of mtDNA segregation. The mechanism of nucleoid formation, however, remains unknown. Here, we show that the mitochondrial transcription factor TFAM, an abundant and highly conserved High Mobility Group box protein, binds DNA cooperatively with nanomolar affinity as a homodimer and that it is capable of coordinating and fully compacting several DNA molecules together to form spheroid structures. We use noncontact atomic force microscopy, which achieves near cryo-electron microscope resolution, to reveal the structural details of protein–DNA compaction intermediates. The formation of these complexes involves the bending of the DNA backbone, and DNA loop formation, followed by the filling in of proximal available DNA sites until the DNA is compacted. These results indicate that TFAM alone is sufficient to organize mitochondrial chromatin and provide a mechanism for nucleoid formation.
机译:将DNA包装成压缩结构是基因组传输不可或缺的部分。哺乳动物的线粒体基因组(mtDNA)是高拷贝的母体遗传基因组,其中的突变引起多种多系统疾病。在所有的真核细胞中,多个mtDNA与蛋白质一起被包装到称为核苷的椭球体中,这是mtDNA分离的基本单位。然而,类核苷酸形成的机制仍然未知。在这里,我们显示线粒体转录因子TFAM,一种丰富且高度保守的高迁移率族盒蛋白,以纳摩尔亲和力作为同型二聚体与DNA协同结合,并且能够将多个DNA分子协调并完全压实在一起形成球体结构。我们使用非接触原子力显微镜,该显微镜可达到接近电子显微镜的分辨率,以揭示蛋白质-DNA压缩中间体的结构细节。这些复合物的形成涉及DNA主链的弯曲和DNA环的形成,然后填充近端可用的DNA位点,直到DNA紧实为止。这些结果表明,单独的TFAM足以组织线粒体染色质并提供类核苷酸形成的机制。

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