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哺乳动物 RNase H1 指导 mtDNA 复制起始的 RNA 引物形成,也是 mtDNA 复制完成所必需的。

Mammalian RNase H1 directs RNA primer formation for mtDNA replication initiation and is also necessary for mtDNA replication completion.

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm 17177, Sweden.

Max Planck Institute for Biology of Ageing, 50931 Cologne, Germany.

出版信息

Nucleic Acids Res. 2022 Aug 26;50(15):8749-8766. doi: 10.1093/nar/gkac661.

Abstract

The in vivo role for RNase H1 in mammalian mitochondria has been much debated. Loss of RNase H1 is embryonic lethal and to further study its role in mtDNA expression we characterized a conditional knockout of Rnaseh1 in mouse heart. We report that RNase H1 is essential for processing of RNA primers to allow site-specific initiation of mtDNA replication. Without RNase H1, the RNA:DNA hybrids at the replication origins are not processed and mtDNA replication is initiated at non-canonical sites and becomes impaired. Importantly, RNase H1 is also needed for replication completion and in its absence linear deleted mtDNA molecules extending between the two origins of mtDNA replication are formed accompanied by mtDNA depletion. The steady-state levels of mitochondrial transcripts follow the levels of mtDNA, and RNA processing is not altered in the absence of RNase H1. Finally, we report the first patient with a homozygous pathogenic mutation in the hybrid-binding domain of RNase H1 causing impaired mtDNA replication. In contrast to catalytically inactive variants of RNase H1, this mutant version has enhanced enzyme activity but shows impaired primer formation. This finding shows that the RNase H1 activity must be strictly controlled to allow proper regulation of mtDNA replication.

摘要

RNase H1 在哺乳动物线粒体中的体内作用一直存在争议。RNase H1 的缺失是胚胎致死的,为了进一步研究其在 mtDNA 表达中的作用,我们在小鼠心脏中对 Rnaseh1 进行了条件性敲除。我们报告称,RNase H1 对于 RNA 引物的加工至关重要,以允许 mtDNA 复制的特异性起始。没有 RNase H1,复制起点处的 RNA:DNA 杂交体不会被加工,mtDNA 复制会在非典型位点起始,并受到损害。重要的是,RNase H1 也需要复制完成,并且在其缺失的情况下,在线粒体 DNA 复制的两个起点之间形成延伸的线性缺失 mtDNA 分子,同时伴随着 mtDNA 耗竭。线粒体转录本的稳态水平与 mtDNA 水平一致,并且在没有 RNase H1 的情况下,RNA 加工没有改变。最后,我们报告了第一个具有 RNase H1 杂交结合域纯合致病性突变的患者,导致 mtDNA 复制受损。与无催化活性的 RNase H1 变体不同,这种突变体版本具有增强的酶活性,但显示出引物形成受损。这一发现表明,RNase H1 的活性必须受到严格控制,以允许对 mtDNA 复制进行适当的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9d2/9410905/69acb27a92cd/gkac661fig1.jpg

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