Muellner Julius, Schmidt Kristina H
Department of Cell Biology, Microbiology and Molecular Biology, University of South Florida, Tampa, FL 33620, USA.
Cancer Biology and Evolution Program, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612, USA.
Genes (Basel). 2020 Feb 20;11(2):224. doi: 10.3390/genes11020224.
The two PIF1 family helicases in Rrm3, and ScPif1, associate with thousands of sites throughout the genome where they perform overlapping and distinct roles in telomere length maintenance, replication through non-histone proteins and G4 structures, lagging strand replication, replication fork convergence, the repair of DNA double-strand break ends, and transposable element mobility. ScPif1 and its fission yeast homolog Pfh1 also localize to mitochondria where they protect mitochondrial genome integrity. In addition to yeast serving as a model system for the rapid functional evaluation of human Pif1 variants, yeast cells lacking Rrm3 have proven useful for elucidating the cellular response to replication fork pausing at endogenous sites. Here, we review the increasingly important cellular functions of the yeast PIF1 helicases in maintaining genome integrity, and highlight recent advances in our understanding of their roles in facilitating fork progression through replisome barriers, their functional interactions with DNA repair, and replication stress response pathways.
Rrm3 中的两种 PIF1 家族解旋酶以及 ScPif1 与基因组中的数千个位点相关联,它们在端粒长度维持、通过非组蛋白和 G4 结构进行复制、滞后链复制、复制叉汇聚、DNA 双链断裂末端修复以及转座元件移动性等方面发挥着重叠且不同的作用。ScPif1 及其裂殖酵母同源物 Pfh1 也定位于线粒体,在那里它们保护线粒体基因组的完整性。除了酵母作为快速评估人类 Pif1 变体功能的模型系统外,缺乏 Rrm3 的酵母细胞已被证明有助于阐明细胞对内源位点复制叉暂停的反应。在这里,我们综述了酵母 PIF1 解旋酶在维持基因组完整性方面日益重要的细胞功能,并强调了我们对它们在促进复制体通过复制叉障碍前进、与 DNA 修复的功能相互作用以及复制应激反应途径中的作用的最新认识进展。