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Human Mitochondrial Transcription Factor B2 Is Required for Promoter Melting during Initiation of Transcription

机译:人类线粒体转录因子B2是启动转录过程中启动子融化所必需的。

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摘要

The mitochondrial transcription initiation machinery in humans consists of three proteins: the RNA polymerase (POLRMT) and two accessory factors, transcription factors A and B2 (TFAM and TFB2M, respectively). This machinery is required for the expression of mitochondrial DNA and the biogenesis of the oxidative phosphorylation system. Previous experiments suggested that TFB2M is required for promoter melting, but conclusive experimental proof for this effect has not been presented. Moreover, the role of TFB2M in promoter unwinding has not been discriminated from that of TFAM. Here we used potassium permanganate footprinting, DNase I footprinting, and in vitro transcription from the mitochondrial light-strand promoter to study the role of TFB2M in transcription initiation. We demonstrate that a complex composed of TFAM and POLRMT was readily formed at the promoter but alone was insufficient for promoter melting, which only occurred when TFB2M joined the complex. We also show that mismatch bubble templates could circumvent the requirement of TFB2M, but TFAM was still required for efficient initiation. Our findings support a model in which TFAM first recruits POLRMT to the promoter, followed by TFB2M binding and induction of promoter melting.
机译:人类的线粒体转录起始机制由三种蛋白质组成:RNA聚合酶(POLRMT)和两个辅助因子,转录因子A和B2(分别为TFAM和TFB2M)。线粒体DNA的表达和氧化磷酸化系统的生物发生需要这种机制。先前的实验表明,TFB2M是启动子融化所必需的,但尚未提供针对此效应的结论性实验证据。此外,TFB2M在启动子退绕中的作用尚未与TFAM区分开。在这里,我们使用高锰酸钾足迹,DNase I足迹和线粒体轻链启动子的体外转录来研究TFB2M在转录起始中的作用。我们证明了由TFAM和POLRMT组成的复合物很容易在启动子上形成,但仅不足以促进启动子融化,只有当TFB2M加入复合物时才会发生。我们还显示,不匹配气泡模板可能会绕过TFB2M的需求,但TFAM仍然是有效启动所必需的。我们的发现支持一种模型,其中TFAM首先将POLRMT募集到启动子,然后是TFB2M结合并诱导启动子融化。

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