Department of Obstetrics and Gynecology, Ulm University, 89075 Ulm, Germany.
Department of Developmental and Stem Cell Biology, Institute Pasteur, CEDEX 15, 75724 Paris, France.
Genes (Basel). 2022 May 13;13(5):879. doi: 10.3390/genes13050879.
Mitochondrial DNA (mtDNA) damaged by reactive oxygen species (ROS) triggers so far poorly understood processes of mtDNA maintenance that are coordinated by a complex interplay among DNA repair, DNA degradation, and DNA replication. This study was designed to identify the proteins involved in mtDNA maintenance by applying a special long-range PCR, reflecting mtDNA integrity in the minor arc. A siRNA screening of literature-based candidates was performed under conditions of enforced oxidative phosphorylation revealing the functional group of polymerases and therein polymerase ζ (POLZ) as top hits. Thus, POLZ knockdown caused mtDNA accumulation, which required the activity of the base excision repair (BER) nuclease APE1, and was followed by compensatory mtDNA replication determined by the single-cell mitochondrial in situ hybridization protocol (mTRIP). Quenching reactive oxygen species (ROS) in mitochondria unveiled an additional, ROS-independent involvement of POLZ in the formation of a typical deletion in the minor arc region. Together with data demonstrating the localization of POLZ in mitochondria, we suggest that POLZ plays a significant role in mtDNA turnover, particularly under conditions of oxidative stress.
线粒体 DNA(mtDNA)受到活性氧(ROS)的损伤,触发了迄今为止尚未被充分理解的 mtDNA 维持过程,这些过程由 DNA 修复、DNA 降解和 DNA 复制之间的复杂相互作用来协调。本研究旨在通过应用特殊的长距离 PCR 来鉴定参与 mtDNA 维持的蛋白质,该 PCR 反映了小弧线上的 mtDNA 完整性。在强制氧化磷酸化条件下,对基于文献的候选物进行 siRNA 筛选,揭示了聚合酶和聚合酶 ζ(POLZ)的功能组作为顶级命中。因此,POLZ 敲低导致 mtDNA 积累,这需要碱基切除修复(BER)核酸内切酶 APE1 的活性,随后通过单细胞线粒体原位杂交(mTRIP)方案确定补偿性 mtDNA 复制。线粒体中活性氧(ROS)的猝灭揭示了 POLZ 在小弧区典型缺失形成中的另一种 ROS 独立参与。结合证明 POLZ 在线粒体中定位的数据,我们认为 POLZ 在 mtDNA 周转中,特别是在氧化应激条件下,发挥着重要作用。