Department of Biochemistry and Molecular Biology, University of Texas Medical Branch at Galveston, Galveston, Texas, USA.
Department of Biochemistry and Molecular Biology, University of Texas Medical Branch at Galveston, Galveston, Texas, USA.
J Biol Chem. 2023 Jul;299(7):104913. doi: 10.1016/j.jbc.2023.104913. Epub 2023 Jun 10.
The evidence that purified pol2-M644G DNA polymerase (Pol)ε exhibits a highly elevated bias for forming T:dTTP mispairs over A:dATP mispairs and that yeast cells harboring this Polε mutation accumulate A > T signature mutations in the leading strand have been used to assign a role for Polε in replicating the leading strand. Here, we determine whether A > T signature mutations result from defects in Polε proofreading activity by analyzing their rate in Polε proofreading defective pol2-4 and pol2-M644G cells. Since purified pol2-4 Polε exhibits no bias for T:dTTP mispair formation, A > T mutations are expected to occur at a much lower rate in pol2-4 than in pol2-M644G cells if Polε replicated the leading strand. Instead, we find that the rate of A > T signature mutations are as highly elevated in pol2-4 cells as in pol2-M644G cells; furthermore, the highly elevated rate of A > T signature mutations is severely curtailed in the absence of PCNA ubiquitination or Polζ in both the pol2-M644G and pol2-4 strains. Altogether, our evidence supports the conclusion that the leading strand A > T signature mutations derive from defects in Polε proofreading activity and not from the role of Polε as a leading strand replicase, and it conforms with the genetic evidence for a major role of Polδ in replication of both the DNA strands.
纯化的 pol2-M644G DNA 聚合酶 (Pol)ε 表现出高度偏向于形成 T:dTTP 错配而非 A:dATP 错配的证据,以及携带这种 Polε 突变的酵母细胞在前导链中积累 A>T 特征性突变,这些证据都被用来确定 Polε 在复制前导链中的作用。在这里,我们通过分析在 Polε 校对缺陷 pol2-4 和 pol2-M644G 细胞中这些突变的速率,来确定 A>T 特征性突变是否是由于 Polε 校对活性缺陷造成的。由于纯化的 pol2-4 Polε 没有形成 T:dTTP 错配的偏向性,如果 Polε 复制前导链,那么预计 A>T 突变在前导链中 pol2-4 的发生速率会比在 pol2-M644G 细胞中低得多。相反,我们发现 A>T 特征性突变在前导链中 pol2-4 细胞中的发生率与 pol2-M644G 细胞中一样高;此外,在缺乏 PCNA 泛素化或 Polζ 的情况下,pol2-M644G 和 pol2-4 菌株中的 A>T 特征性突变的高发生率都受到严重抑制。总之,我们的证据支持这样的结论,即前导链 A>T 特征性突变源自 Polε 校对活性的缺陷,而不是 Polε 作为前导链复制酶的作用,并且这与 Polδ 在两条 DNA 链复制中起主要作用的遗传证据一致。