Coulter D E, Greenleaf A L
J Biol Chem. 1982 Feb 25;257(4):1945-52.
We tested and compared several in vitro properties of wild type and mutant RNA polymerases II from Drosophila melanogaster, using several different mutants of a single X-linked genetic locus, RpIIC4 (Greenleaf, A. L., Weeks, J. R., Voelker, R. A., Ohnishi, S., and Dickson, B. (1980) Cell 21, 785-792); the mutants tested included the original amanitin-resistant mutant, C4, which is nonconditional, plus the temperature-sensitive mutants A9, C20, E28, and 1Fb40. Using a tritium-labeled amanitin derivative, we demonstrated that C4 polymerase has a reduced binding affinity for amanitin. The C4 polymerase was as stable to thermal denaturation as the wild type enzyme, and the two enzymes had similar specific activities, ionic strength and Mn2+ requirements, and apparent Km values for UTP and GTP when assayed in the presence of Mn2+. However, with Mg2+ as the divalent cation, C4 polymerase was less active than wild type and had 2-fold higher apparent Km values for UTP and GTP. Three of the temperature-sensitive mutants, A9, C20, and E28, were derived from the amanitin-resistant mutant C4; the polymerase II activities from these mutants displayed resistance to alpha-amanitin in vitro identical with that of the C4 enzyme. C20, E28, and 1Fb40 polymerases were markedly less stable to thermal denaturation in vitro than wild type polymerase. The results presented indicate that the mutations at the RNA polymerase locus (RpIIC4-) directly alter the structure of the enzyme, providing conclusive evidence that the locus is a structural gene for a polymerase II subunit.
我们使用果蝇单个X连锁基因座RpIIC4的几种不同突变体(Greenleaf, A. L., Weeks, J. R., Voelker, R. A., Ohnishi, S., and Dickson, B. (1980) Cell 21, 785 - 792),测试并比较了野生型和突变型黑腹果蝇RNA聚合酶II的几种体外特性;所测试的突变体包括原始的对鹅膏蕈碱耐药的非条件突变体C4,以及温度敏感突变体A9、C20、E28和1Fb40。使用氚标记的鹅膏蕈碱衍生物,我们证明C4聚合酶对鹅膏蕈碱的结合亲和力降低。C4聚合酶对热变性的稳定性与野生型酶相同,并且在存在Mn2+的情况下进行测定时,这两种酶具有相似的比活性、离子强度和Mn2+需求,以及对UTP和GTP的表观Km值。然而,以Mg2+作为二价阳离子时,C4聚合酶的活性低于野生型,并且对UTP和GTP的表观Km值高2倍。三个温度敏感突变体A9、C20和E28源自对鹅膏蕈碱耐药的突变体C4;这些突变体的聚合酶II活性在体外对α-鹅膏蕈碱的抗性与C4酶相同。C20、E28和1Fb40聚合酶在体外对热变性的稳定性明显低于野生型聚合酶。所呈现的结果表明,RNA聚合酶基因座(RpIIC4-)处的突变直接改变了酶的结构,提供了确凿的证据表明该基因座是聚合酶II亚基的结构基因。