Department of Biology, University of Iowa, Iowa City, Iowa, United States of America.
Department of Molecular Biology, Princeton University, Princeton, New Jersey, United States of America.
PLoS Genet. 2023 Jul 24;19(7):e1010853. doi: 10.1371/journal.pgen.1010853. eCollection 2023 Jul.
Saccharomyces cerevisiae Pif1 is a multi-functional DNA helicase that plays diverse roles in the maintenance of the nuclear and mitochondrial genomes. Two isoforms of Pif1 are generated from a single open reading frame by the use of alternative translational start sites. The Mitochondrial Targeting Signal (MTS) of Pif1 is located between the two start sites, but a Nuclear Localization Signal (NLS) has not been identified. Here we used sequence and functional analysis to identify an NLS element. A mutant allele of PIF1 (pif1-NLSΔ) that lacks four basic amino acids (781KKRK784) in the carboxyl-terminal domain of the 859 amino acid Pif1 was expressed at wild type levels and retained wild type mitochondrial function. However, pif1-NLSΔ cells were defective in four tests for nuclear function: telomere length maintenance, Okazaki fragment processing, break-induced replication (BIR), and binding to nuclear target sites. Fusing the NLS from the simian virus 40 (SV40) T-antigen to the Pif1-NLSΔ protein reduced the nuclear defects of pif1-NLSΔ cells. Thus, four basic amino acids near the carboxyl end of Pif1 are required for the vast majority of nuclear Pif1 function. Our study also reveals phenotypic differences between the previously described loss of function pif1-m2 allele and three other pif1 mutant alleles generated in this work, which will be useful to study nuclear Pif1 functions.
酿酒酵母 Pif1 是一种多功能 DNA 解旋酶,在维持核和线粒体基因组方面发挥着多样化的作用。两种 Pif1 同工型是通过使用不同的翻译起始位点从单个开放阅读框产生的。Pif1 的线粒体靶向信号 (MTS) 位于两个起始位点之间,但尚未鉴定出核定位信号 (NLS)。在这里,我们使用序列和功能分析来鉴定 NLS 元件。一种缺失羧基端 859 个氨基酸的 Pif1 中四个碱性氨基酸 (781KKRK784) 的 PIF1 突变等位基因 (pif1-NLSΔ) 以野生型水平表达并保留野生型线粒体功能。然而,pif1-NLSΔ 细胞在四项核功能测试中存在缺陷:端粒长度维持、冈崎片段处理、断裂诱导复制 (BIR) 和与核靶位点结合。将来自猿猴病毒 40 (SV40) T 抗原的 NLS 融合到 Pif1-NLSΔ 蛋白上,降低了 pif1-NLSΔ 细胞的核缺陷。因此,Pif1 羧基端附近的四个碱性氨基酸是 Pif1 绝大多数核功能所必需的。我们的研究还揭示了之前描述的功能丧失 pif1-m2 等位基因与本工作中产生的另外三个 pif1 突变等位基因之间的表型差异,这将有助于研究核 Pif1 功能。