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The thumb subdomain of yeast mitochondrial RNA polymerase is involved in processivity, transcript fidelity and mitochondrial transcription factor binding

机译:酵母线粒体RNA聚合酶的拇指亚结构域涉及过程性,转录本保真度和线粒体转录因子结合

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Single subunit RNA polymerases have evolved 2 mechanisms to synthesize long transcripts without falling off a DNA template: binding of nascent RNA and interactions with an RNA:DNA hybrid. Mitochondrial RNA polymerases share a common ancestor with T-odd bacteriophage single subunit RNA polymerases. Herein we characterized the role of the thumb subdomain of the yeast mtRNA polymerase gene (RPO41) in complex stability, processivity, and fidelity. We found that deletion and point mutants of the thumb subdomain of yeast mtRNA polymerase increase the synthesis of abortive transcripts and the probability that the polymerase will disengage from the template during the formation of the late initial transcription and elongation complexes. Mutations in the thumb subdomain increase the amount of slippage products from a homopolymeric template and, unexpectedly, thumb subdomain deletions decrease the binding affinity for mitochondrial transcription factor (Mtf1). The latter suggests that the thumb subdomain is part of an extended binding surface area involved in binding Mtf1.
机译:单个亚基RNA聚合酶已经进化出2种机制来合成长转录本而不会掉落DNA模板:新生RNA的结合以及与RNA:DNA杂种的相互作用。线粒体RNA聚合酶与T奇数噬菌体单亚基RNA聚合酶有共同的祖先。在本文中,我们表征了酵母mtRNA聚合酶基因(RPO41)的拇指亚结构域在复杂稳定性,持续性和保真性中的作用。我们发现,酵母mtRNA聚合酶拇指亚结构域的缺失和点突变体增加了流产转录本的合成,并增加了聚合酶在后期初始转录和延伸复合物形成过程中与模板分离的可能性。拇指亚结构域中的突变会增加均聚物模板产生的滑移产物,并且意外地,拇指亚结构域的缺失会降低对线粒体转录因子(Mtf1)的结合亲和力。后者表明拇指亚结构域是参与结合Mtf1的扩展结合表面积的一部分。

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