Amin N S, Tuffo K M, Holm C
Department of Pharmacology, Division of Cellular and Molecular Medicine, University of California, San Diego, California 92093-0651, USA.
Genetics. 1999 Dec;153(4):1617-28. doi: 10.1093/genetics/153.4.1617.
To identify proteins that interact with the yeast proliferating cell nuclear antigen (PCNA), we used a genetic approach to isolate mutations that compensate for the defects in cold-sensitive (Cs(-)) mutants of yeast PCNA (POL30). Because the cocrystal structure of human PCNA and a p21(WAF1/CIP1) peptide shows that the interdomain region of PCNA is a site of p21 interaction, we specifically looked for new mutations that suppress mutations in the equivalent region of yeast PCNA. In independent screens using three different Cs(-) mutants, we identified spontaneously arising dominant suppressor mutations in the RFC3 gene. In addition, dominant suppressor mutations were identified in the RFC1 and RFC2 genes using a single pol30 mutant. An intimate association between PCNA and RFC1p, RFC2p, and RFC3p is suggested by the allele-restricted suppression of 10 different pol30 alleles by the RFC suppressors. RFC1, RFC2, and RFC3 encode three of the five subunits of the replication factor C complex, which is required to load PCNA onto DNA in reconstituted DNA replication reactions. Genomic sequencing reveals a common region in RFC1p, RFC2p, and RFC3p that is important for the functional interaction with PCNA. Biochemical analysis of the wild type and mutant PCNA and RFC3 proteins shows that mutant RFC3p enhances the production of long DNA products in pol delta-dependent DNA synthesis, which is consistent with an increase in processivity.
为了鉴定与酵母增殖细胞核抗原(PCNA)相互作用的蛋白质,我们采用了一种遗传学方法来分离能够补偿酵母PCNA(POL30)冷敏感(Cs(-))突变体缺陷的突变。由于人PCNA与p21(WAF1/CIP1)肽的共晶体结构表明PCNA的结构域间区域是p21相互作用的位点,我们专门寻找能抑制酵母PCNA等效区域突变的新突变。在使用三种不同Cs(-)突变体的独立筛选中,我们在RFC3基因中鉴定出自发产生的显性抑制突变。此外,使用单个pol30突变体在RFC1和RFC2基因中也鉴定出了显性抑制突变。RFC抑制子对10种不同pol30等位基因的等位基因特异性抑制表明PCNA与RFC1p、RFC2p和RFC3p之间存在密切关联。RFC1、RFC2和RFC3编码复制因子C复合物五个亚基中的三个,在重组DNA复制反应中,该复合物是将PCNA加载到DNA上所必需的。基因组测序揭示了RFC1p、RFC2p和RFC3p中一个对与PCNA功能相互作用很重要的共同区域。对野生型和突变型PCNA及RFC3蛋白的生化分析表明,突变型RFC3p在依赖于polδ的DNA合成中增强了长DNA产物的产生,这与持续性增加是一致的。