Institute of Biomedical Technology and Tampere University Hospital, Tampere, Finland ; Estonian Biocentre, Tartu, Estonia.
PLoS Genet. 2013;9(9):e1003800. doi: 10.1371/journal.pgen.1003800. Epub 2013 Sep 19.
All genomes require a system for avoidance or handling of collisions between the machineries of DNA replication and transcription. We have investigated the roles in this process of the mTERF (mitochondrial transcription termination factor) family members mTTF and mTerf5 in Drosophila melanogaster. The two mTTF binding sites in Drosophila mtDNA, which also bind mTerf5, were found to coincide with major sites of replication pausing. RNAi-mediated knockdown of either factor resulted in mtDNA depletion and developmental arrest. mTTF knockdown decreased site-specific replication pausing, but led to an increase in replication stalling and fork regression in broad zones around each mTTF binding site. Lagging-strand DNA synthesis was impaired, with extended RNA/DNA hybrid segments seen in replication intermediates. This was accompanied by the accumulation of recombination intermediates and nicked/broken mtDNA species. Conversely, mTerf5 knockdown led to enhanced replication pausing at mTTF binding sites, a decrease in fragile replication intermediates containing single-stranded segments, and the disappearance of species containing segments of RNA/DNA hybrid. These findings indicate an essential and previously undescribed role for proteins of the mTERF family in the integration of transcription and DNA replication, preventing unregulated collisions and facilitating productive interactions between the two machineries that are inferred to be essential for completion of lagging-strand DNA synthesis.
所有基因组都需要有一种系统来避免或处理 DNA 复制和转录机器之间的碰撞。我们研究了果蝇中 mTERF(线粒体转录终止因子)家族成员 mTTF 和 mTerf5 在这个过程中的作用。在果蝇 mtDNA 中,有两个 mTTF 结合位点,也与 mTerf5 结合,这两个位点与主要的复制暂停位点重合。通过 RNAi 介导的两种因子的敲低,导致 mtDNA 耗竭和发育停滞。mTTF 敲低降低了特定部位的复制暂停,但导致在每个 mTTF 结合位点周围的广泛区域中复制停滞和叉回归增加。滞后链 DNA 合成受损,在复制中间体中可见延长的 RNA/DNA 杂交片段。这伴随着重组中间体和带缺口/断裂的 mtDNA 物种的积累。相反,mTerf5 敲低导致 mTTF 结合位点的复制暂停增强,含有单链片段的脆弱复制中间体减少,并且含有 RNA/DNA 杂交片段的物种消失。这些发现表明 mTERF 家族的蛋白质在转录和 DNA 复制的整合中起着至关重要的、以前未被描述的作用,防止不受控制的碰撞,并促进两个机器之间的有效相互作用,这对于完成滞后链 DNA 合成是必不可少的。