Chang L M
J Biol Chem. 1977 Mar 25;252(6):1873-80.
Two DNA polymerases are present in extracts of commercial bakers' yeast and wild type Saccharomyces cerevisiae grown aerobically to late log phase. Yeast DNA polymerase I and yeast DNA polymerase II can be separated by DEAE-cellulose, hydroxylapatite, and denatured DNA-cellulose chromatography from the postmitochondrial supernatants of yeast lysates. The yeast polymerases are both of high molecular weight (greater than 100,000) but are clearly separate species by the lack of immunological cross-reactivity. Analysis of associated enzyme activities and other reaction properties of yeast DNA polymerases provides additional evidence for distinguishing the two species. Enzyme I has no associated nuclease activity but does carry out pyrophosphate exchange and pyrophosphorolysis reactions, and has an associated 3'-exonuclease activity. Enzyme I does not degrade deoxynucleoside triphosphates and cannot utilize a mismatched template. Enzyme II does carry out a template-dependent deoxynucleoside triphosphate degradation reaction and can excise mismatched 3'-nucleotides from suitable template systems. Earlier studies have shown that both Enzyme I and Enzyme II are inhibited by N-ethylmaleimide. The yeast enzymes are not identical to any known eukaryotic or prokaryotic DNA polymerases. In general, Enzyme I appears to be most similar to eukaryotic DNA polymerase alpha and Ezyme II exhibits properties of prokaryotic DNA polymerases II and III.
在商业面包酵母提取物以及需氧培养至对数后期的野生型酿酒酵母中存在两种DNA聚合酶。酵母DNA聚合酶I和酵母DNA聚合酶II可通过二乙氨基乙基纤维素、羟基磷灰石以及变性DNA纤维素色谱法从酵母裂解物的线粒体后上清液中分离出来。这两种酵母聚合酶分子量都很高(大于100,000),但由于缺乏免疫交叉反应性,显然是不同的种类。对酵母DNA聚合酶相关酶活性及其他反应特性的分析为区分这两种酶提供了更多证据。酶I没有相关的核酸酶活性,但能进行焦磷酸交换和焦磷酸解反应,并且具有相关的3' - 外切核酸酶活性。酶I不会降解脱氧核苷三磷酸,也不能利用错配模板。酶II能进行依赖模板的脱氧核苷三磷酸降解反应,并且能从合适的模板系统中切除错配的3' - 核苷酸。早期研究表明,酶I和酶II都受到N - 乙基马来酰亚胺的抑制。酵母中的这两种酶与任何已知的真核或原核DNA聚合酶都不相同。一般来说,酶I似乎与真核DNA聚合酶α最为相似,而酶II表现出原核DNA聚合酶II和III的特性。