Ohya T, Maki S, Kawasaki Y, Sugino A
Department of Biochemistry and Molecular Biology, Research Institute for Microbial Diseases, Osaka University, 3-1 Yamada-oka, Suita, Osaka 565-0871, Japan.
Nucleic Acids Res. 2000 Oct 15;28(20):3846-52. doi: 10.1093/nar/28.20.3846.
DNA polymerase epsilon (Polepsilon) of Saccharomyces cerevisiae is purified as a complex of four polypeptides with molecular masses of >250, 80, 34 (and 31) and 29 kDa as determined by SDS-PAGE. The genes POL2, DPB2 and DPB3, encoding the catalytic Pol2p, the second (Dpb2p) and the third largest subunits (Dpb3p) of the complex, respectively, were previously cloned and characterised. This paper reports the partial amino acid sequence of the fourth subunit (Dpb4p) of Polepsilon. This protein sequence matches parts of the predicted amino acid sequence from the YDR121w open reading frame on S.cerevisiae chromosome IV. Thus, YDR121w was renamed DPB4. A deletion mutant of DPB4 (Deltadpb4) is not lethal, but chromosomal DNA replication is slightly disturbed in this mutant. A double mutant haploid strain carrying the Deltadpb4 deletion and either pol2-11 or dpb11-1 is lethal at all temperatures tested. Furthermore, the restrictive temperature of double mutants carrying Deltadpb4 and dpb2-1, rad53-1 or rad53-21 is lower than in the corresponding single mutants. These results strongly suggest that Dpb4p plays an important role in maintaining the complex structure of Polepsilon in S.cerevisiae, even if it is not essential for cell growth. Structural homologues of DPB4 are present in other eukaryotic genomes, suggesting that the complex structure of S. cerevisiae Polepsilon is conserved in eukaryotes.
酿酒酵母的DNA聚合酶ε(Polepsilon)被纯化出来,它是一种由四种多肽组成的复合物,通过SDS-PAGE测定,其分子量分别大于250、80、34(和31)以及29 kDa。分别编码该复合物的催化亚基Pol2p、第二大亚基(Dpb2p)和第三大亚基(Dpb3p)的POL2、DPB2和DPB3基因,此前已被克隆和表征。本文报道了Polepsilon第四亚基(Dpb4p)的部分氨基酸序列。该蛋白质序列与酿酒酵母IV号染色体上YDR121w开放阅读框预测的氨基酸序列部分匹配。因此,YDR121w被重新命名为DPB4。DPB4的缺失突变体(Deltadpb4)并非致死性的,但该突变体中的染色体DNA复制会受到轻微干扰。携带Deltadpb4缺失以及pol2-11或dpb11-1的双突变单倍体菌株在所有测试温度下均致死。此外,携带Deltadpb4和dpb2-1、rad53-1或rad53-21的双突变体的限制温度低于相应的单突变体。这些结果强烈表明,Dpb4p在维持酿酒酵母中Polepsilon的复合物结构方面发挥着重要作用,即便它对细胞生长并非必不可少。DPB4的结构同源物存在于其他真核生物基因组中,这表明酿酒酵母Polepsilon的复合物结构在真核生物中是保守的。