Meah Y S, Bryant F R
Department of Biochemistry, Johns Hopkins University, School of Hygiene and Public Health, Baltimore, Maryland 21205.
J Biol Chem. 1993 Nov 15;268(32):23991-6.
We recently described two mutant recA proteins, (G160N)recA and (H163A)recA, which have full single-stranded DNA-dependent ATP hydrolysis activity but which are unable to promote the ATP-dependent strand exchange reaction under standard reaction conditions (pH 7.5). These mutant proteins, however, are able to promote strand exchange at pH 6.0 to 6.8. Here we show that this activation correlates with a pH-dependent decrease in the S0.5 value for ATP, with the (H163A)recA protein becoming active in strand exchange at pH values where the S0.5(ATP) decreases below 100 microM. We also show that the (H163A)recA protein is active in strand exchange over the range of pH 6.0-8.2 if dATP (or ddATP) is used in place of ATP as a cofactor; dATP is hydrolyzed by (H163A)recA protein at the same rate as ATP but has an S0.5 value lower than 100 microM across this pH range. These results are discussed with regard to the general significance of the S0.5 value in determining whether a nucleoside triphosphate will be able to stabilize the recA-single-stranded DNA filament in the strand exchange active conformational state.
我们最近描述了两种突变型RecA蛋白,即(G160N)RecA和(H163A)RecA,它们具有完全的单链DNA依赖性ATP水解活性,但在标准反应条件(pH 7.5)下无法促进ATP依赖性的链交换反应。然而,这些突变蛋白在pH 6.0至6.8时能够促进链交换。在此我们表明,这种激活与ATP的S0.5值随pH的降低相关,(H163A)RecA蛋白在S0.5(ATP)降至100 microM以下的pH值时在链交换中变得活跃。我们还表明,如果使用dATP(或ddATP)代替ATP作为辅因子,(H163A)RecA蛋白在pH 6.0 - 8.2范围内的链交换中具有活性;dATP被(H163A)RecA蛋白水解的速率与ATP相同,但在该pH范围内其S0.5值低于100 microM。就S0.5值在确定核苷三磷酸是否能够在链交换活性构象状态下稳定RecA - 单链DNA细丝方面的一般意义进行了讨论。