Fuenmayor J, Zhang J, Ruyechan W, Williams N
Department of Microbiology, State University of New York, Buffalo 14214, USA.
J Eukaryot Microbiol. 1998 Jul-Aug;45(4):404-10. doi: 10.1111/j.1550-7408.1998.tb05091.x.
We have identified and partially purified two DNA polymerase activities from purified Trypanosoma brucei mitochondrial extracts. The DNA polymerase activity eluted from the single-stranded DNA agarose column at 0.15 M KCl (polymerase M1) was significantly inhibited by salt concentrations greater than 100 mM, utilized Mg2+ in preference to Mn2+ as a cofactor on deoxyribonucleotide templates with deoxyribose primers, and in the presence of Mn2+ favored a ribonucleotide template with a deoxyribose primer. A 44 kDa peptide in this fraction crossreacted with antisera against the Crithidia fasciculata beta-like mitochondrial polymerase. In activity gels the catalytic peptide migrated at an apparent molecular weight of 35 kDa. The DNA polymerase activity present in the 0.3 M KCl DNA agarose fraction (polymerase M2) exhibited optimum activity at 120-180 mM KCl, used both Mg2+ and Mn2+ as cofactors, and used deoxyribonucleotide templates primed with either deoxyribose or ribose oligomers. Activity gel assays indicate that the native catalytic peptide(s) is approximately 80 kDa in size. The two polymerases showed different sensitivities to several inhibitors: polymerase M1 shows similarities to the Crithidia fasciculata beta-like mitochondrial polymerase while polymerase M2 is a novel, salt-activated enzyme of higher molecular weight.
我们已从纯化的布氏锥虫线粒体提取物中鉴定并部分纯化了两种DNA聚合酶活性。从单链DNA琼脂糖柱上以0.15M KCl洗脱的DNA聚合酶活性(聚合酶M1)在盐浓度大于100mM时受到显著抑制,在以脱氧核糖引物的脱氧核糖核苷酸模板上优先利用Mg2+而非Mn2+作为辅因子,并且在Mn2+存在的情况下更倾向于以核糖核苷酸模板和脱氧核糖引物。该组分中的一种44kDa肽与抗 fasciculata 利什曼原虫β样线粒体聚合酶的抗血清发生交叉反应。在活性凝胶中,催化肽的表观分子量为35kDa。0.3M KCl DNA琼脂糖组分中存在的DNA聚合酶活性(聚合酶M2)在120 - 180mM KCl时表现出最佳活性,同时使用Mg2+和Mn2+作为辅因子,并使用以脱氧核糖或核糖寡聚物引发的脱氧核糖核苷酸模板。活性凝胶分析表明,天然催化肽的大小约为80kDa。这两种聚合酶对几种抑制剂表现出不同的敏感性:聚合酶M1与 fasciculata 利什曼原虫β样线粒体聚合酶相似,而聚合酶M2是一种新型的、盐激活的高分子量酶。