Miles J, Formosa T
Department of Biochemistry, University of Utah School of Medicine, Salt Lake City 84132.
Mol Cell Biol. 1992 Dec;12(12):5724-35. doi: 10.1128/mcb.12.12.5724-5735.1992.
Potential DNA replication accessory factors from the yeast Saccharomyces cerevisiae have previously been identified by their ability to bind to DNA polymerase alpha protein affinity matrices (J. Miles and T. Formosa, Proc. Natl. Acad. Sci. USA 89:1276-1280, 1992). We have now used genetic methods to characterize the gene encoding one of these DNA polymerase alpha-binding proteins (POB1) to determine whether it plays a role in DNA replication in vivo. We find that yeast cells lacking POB1 are viable but display a constellation of phenotypes indicating defective DNA metabolism. Populations of cells lacking POB1 accumulate abnormally high numbers of enlarged large-budded cells with a single nucleus at the neck of the bud. The average DNA content in a population of cells lacking POB1 is shifted toward the G2 value. These two phenotypes indicate that while the bulk of DNA replication is completed without POB1, mitosis is delayed. Deleting POB1 also causes elevated levels of both chromosome loss and genetic recombination, enhances the temperature sensitivity of cells with mutant DNA polymerase alpha genes, causes increased sensitivity to UV radiation in cells lacking a functional RAD9 checkpoint gene, and causes an increased probability of death in cells carrying a mutation in the MEC1 checkpoint gene. The sequence of the POB1 gene indicates that it is identical to the CTF4 (CHL15) gene identified previously in screens for mutations that diminish the fidelity of chromosome transmission. These phenotypes are consistent with defective DNA metabolism in cells lacking POB1 and strongly suggest that this DNA polymerase alpha-binding protein plays a role in accurately duplicating the genome in vivo.
先前已通过与DNA聚合酶α蛋白亲和基质的结合能力,鉴定出来自酿酒酵母的潜在DNA复制辅助因子(J. 迈尔斯和T. 福尔莫萨,《美国国家科学院院刊》89:1276 - 1280,1992)。我们现在已使用遗传学方法来表征编码这些DNA聚合酶α结合蛋白之一(POB1)的基因,以确定它在体内DNA复制中是否发挥作用。我们发现缺乏POB1的酵母细胞是可存活的,但表现出一系列表明DNA代谢缺陷的表型。缺乏POB1的细胞群体积累了异常大量的、在芽颈处有单个细胞核的、增大的大芽殖细胞。缺乏POB1的细胞群体中的平均DNA含量向G2值偏移。这两种表型表明,虽然没有POB1时大部分DNA复制仍能完成,但有丝分裂会延迟。删除POB1还会导致染色体丢失和基因重组水平升高,增强具有突变DNA聚合酶α基因的细胞的温度敏感性,使缺乏功能性RAD9检查点基因的细胞对紫外线辐射的敏感性增加,并导致携带MEC1检查点基因突变的细胞死亡概率增加。POB1基因的序列表明它与先前在筛选降低染色体传递保真度的突变时鉴定出的CTF4(CHL15)基因相同。这些表型与缺乏POB1的细胞中的DNA代谢缺陷一致,并强烈表明这种DNA聚合酶α结合蛋白在体内准确复制基因组中发挥作用。