Johansson Erik, Garg Parie, Burgers Peter M J
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Biol Chem. 2004 Jan 16;279(3):1907-15. doi: 10.1074/jbc.M310362200. Epub 2003 Oct 31.
We have carried out a domain analysis of POL32, the third subunit of Saccharomyces cerevisiae DNA polymerase delta (Pol delta). Interactions with POL31, the second subunit of Pol delta, are specified by the amino-terminal 92 amino acids, whereas interactions with the replication clamp proliferating cell nuclear antigen (PCNA, POL30) reside at the extreme carboxyl-terminal region. Pol32 binding, in vivo and in vitro, to the large subunit of DNA polymerase alpha, POL1, requires the carboxyl-proximal region of Pol32. The amino-terminal region of Pol32 is essential for damage-induced mutagenesis. However, the presence of its carboxyl-terminal PCNA-binding domain enhances the efficiency of mutagenesis, particularly at high loads of DNA damage. In vitro, in the absence of effector DNA, the PCNA-binding domain of Pol32 is essential for PCNA-Pol delta interactions. However, this domain has minimal importance for processive DNA synthesis by the ternary DNA-PCNA-Pol delta complex. Rather, processivity is determined by PCNA-binding domains located in the Pol3 and/or Pol31 subunits. Using diagnostic PCNA mutants, we show that during DNA synthesis the carboxyl-terminal domain of Pol32 interacts with the carboxyl-terminal region of PCNA, whereas interactions of the other subunit(s) of Pol delta localize largely to a hydrophobic pocket at the interdomain connector loop region of PCNA.
我们对酿酒酵母DNA聚合酶δ(Pol δ)的第三个亚基POL32进行了结构域分析。与Pol δ的第二个亚基POL31的相互作用由氨基末端的92个氨基酸决定,而与复制夹增殖细胞核抗原(PCNA,POL30)的相互作用则位于极端羧基末端区域。在体内和体外,Pol32与DNA聚合酶α的大亚基POL1的结合需要Pol32的羧基近端区域。Pol32的氨基末端区域对于损伤诱导的诱变至关重要。然而,其羧基末端PCNA结合结构域的存在提高了诱变效率,特别是在高负荷DNA损伤的情况下。在体外,在没有效应DNA的情况下,Pol32的PCNA结合结构域对于PCNA-Pol δ相互作用至关重要。然而,该结构域对于三元DNA-PCNA-Pol δ复合物的持续性DNA合成的重要性最小。相反,持续性由位于Pol3和/或Pol31亚基中的PCNA结合结构域决定。使用诊断性PCNA突变体,我们表明在DNA合成过程中,Pol32的羧基末端结构域与PCNA的羧基末端区域相互作用,而Pol δ的其他亚基的相互作用主要定位于PCNA结构域间连接环区域的疏水口袋。