Bryant F R, Lehman I R
J Biol Chem. 1986 Oct 5;261(28):12988-93.
In an effort to clarify the requirement for ATP in the recA protein-promoted renaturation of complementary DNA strands, we have analyzed the mutant recA1 protein which lacks single-stranded DNA-dependent ATPase activity at pH 7.5. Like the wild type, the recA1 protein binds to single-stranded DNA with a stoichiometry of one monomer per approximately four nucleotides. However, unlike the wild type, the mutant protein is dissociated from single-stranded DNA in the presence of ATP or ADP. The ATP analogue adenosine 5'-O-3' (thiotriphosphate) appears to stabilize the binding of recA1 protein to single-stranded DNA but does not elicit the stoichiometry of 1 monomer/8 nucleotides or the formation of highly condensed protein-DNA networks that are characteristic of the wild type recA protein in the presence of this analogue. The recA1 protein does not catalyze DNA renaturation in the presence of ATP, consistent with the dissociation of recA1 protein from single-stranded DNA under these conditions. However, it does promote a pattern of Mg2+-dependent renaturation identical to that found for wild type recA protein.
为了阐明在recA蛋白促进互补DNA链复性过程中对ATP的需求,我们分析了在pH 7.5时缺乏单链DNA依赖性ATP酶活性的突变型recA1蛋白。与野生型一样,recA1蛋白以每大约四个核苷酸一个单体的化学计量比与单链DNA结合。然而,与野生型不同的是,在ATP或ADP存在的情况下,突变蛋白会从单链DNA上解离。ATP类似物腺苷5'-O-3'(硫代三磷酸)似乎能稳定recA1蛋白与单链DNA的结合,但不会引发1个单体/8个核苷酸的化学计量比,也不会形成在该类似物存在下野生型recA蛋白特有的高度浓缩的蛋白质-DNA网络。在ATP存在的情况下,recA1蛋白不催化DNA复性,这与在这些条件下recA1蛋白从单链DNA上解离是一致的。然而,它确实促进了一种与野生型recA蛋白相同的依赖Mg2+的复性模式。