Tomkinson A E, Tappe N J, Friedberg E C
Department of Pathology, University of Texas Southwestern Medical Center, Dallas 75235-9072.
Biochemistry. 1992 Dec 1;31(47):11762-71. doi: 10.1021/bi00162a013.
Genetic studies have previously demonstrated that the Saccharomyces cerevisiae CDC9 gene product, which is functionally homologous to mammalian DNA ligase I, is required for DNA replication and is also involved in DNA repair and genetic recombination. In the present study we have purified the yeast enzyme. When measured under denaturing conditions, Cdc9 protein has a polypeptide molecular mass of 87 kDa. The native form of the enzyme is an 80-kDa asymmetric monomer. Both estimates are in good agreement with the M(r) = 84,406 predicted from the translated sequence of the CDC9 gene. Cdc9 DNA ligase acts via the same basic reaction mechanism employed by all known ATP-dependent DNA ligases. The catalytic functions reside in a 70-kDa C-terminal domain that is conserved in mammalian DNA ligase I and in Cdc17 DNA ligase from Schizosaccharomyces pombe. The ATP analog ATP alpha S inhibits the ligation reaction, although Cdc9 protein does form an enzyme-thioadenylate intermediate. Since Cdc9 DNA ligase exhibited the same substrate specificity as mammalian DNA ligase I, this enzyme can be considered to be the DNA ligase I of S. cerevisiae. There is genetic evidence suggesting that DNA ligase may be directly involved in error-prone DNA repair. We examined the ability of Cdc9 DNA ligase to join nicks with mismatches at the termini. Mismatches at the 5' termini of nicks had very little effect on ligation, whereas mismatches opposite a purine at 3' termini inhibited DNA ligation. The joining of DNA molecules with mismatched termini by DNA ligase may be responsible for the generation of mutations.
遗传研究先前已证明,酿酒酵母CDC9基因产物与哺乳动物DNA连接酶I在功能上同源,是DNA复制所必需的,还参与DNA修复和基因重组。在本研究中,我们纯化了这种酵母酶。在变性条件下测量时,Cdc9蛋白的多肽分子量为87 kDa。该酶的天然形式是一个80 kDa的不对称单体。这两个估计值与从CDC9基因的翻译序列预测的M(r)=84,406非常一致。Cdc9 DNA连接酶通过所有已知的ATP依赖性DNA连接酶所采用的相同基本反应机制起作用。催化功能存在于一个70 kDa的C末端结构域中,该结构域在哺乳动物DNA连接酶I和粟酒裂殖酵母的Cdc17 DNA连接酶中是保守的。ATP类似物ATPαS抑制连接反应,尽管Cdc9蛋白确实形成了酶-硫代腺苷酸中间体。由于Cdc9 DNA连接酶表现出与哺乳动物DNA连接酶I相同的底物特异性,因此该酶可被认为是酿酒酵母的DNA连接酶I。有遗传证据表明DNA连接酶可能直接参与易错DNA修复。我们研究了Cdc9 DNA连接酶连接末端有错配切口的能力。切口5'末端的错配对连接影响很小,而3'末端与嘌呤相对的错配则抑制DNA连接。DNA连接酶连接末端有错配的DNA分子可能是产生突变的原因。