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In organello footprint analysis of human mitochondrial DNA: human mitochondrial transcription factor A interactions at the origin of replication.

机译:在人类线粒体DNA的Organello足迹分析中:复制起点处的人类线粒体转录因子A相互作用。

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Using in organello footprint analysis, we demonstrate that within human placental mitochondria there is a high level of protein-DNA binding at regularly phased intervals throughout a 500-bp region encompassing the D-loop DNA origins and two promoter regions. Comparison with in vitro DNase I protection studies indicates that this protein-DNA interaction is due to non-sequence-specific binding by human mitochondrial transcription factor A (h-mtTFA). Since h-mtTFA can bend and wrap DNA, like its yeast counterpart ABF2, a primary function of h-mtTFA appears to be specific packaging of the mitochondrial DNA control region in vivo. Intervals of protein binding coincide with the spacing of the RNA start sites and prominent D-loop DNA 5' ends, suggesting a role for phased h-mtTFA binding in defining transcription and H-strand DNA replication origins. Significant protein-DNA interaction was also observed within the human homolog of conserved sequence block 1, both in organello and in vitro, using purified h-mtTFA.
机译:使用器皿脚印分析,我们证明在人类胎盘线粒体中,在包含D环DNA起源和两个启动子区域的整个500 bp区域中,在规则相控的间隔内存在高水平的蛋白质-DNA结合。与体外DNase I保护研究的比较表明,这种蛋白质与DNA的相互作用是由于人线粒体转录因子A(h-mtTFA)的非序列特异性结合所致。由于h-mtTFA可以像其酵母对应物ABF2一样弯曲和包裹DNA,因此h-mtTFA的主要功能似乎是体内线粒体DNA控制区的特异性包装。蛋白质结合的时间间隔与RNA起始位点和突出的D环DNA 5'末端的间隔相符,这表明h-mtTFA的阶段性结合在定义转录和H链DNA复制起点中的作用。使用纯化的h-mtTFA,在器官和体外的保守序列区1的人类同源物中也观察到了重要的蛋白质-DNA相互作用。

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