Jain S K, Inman R B, Cox M M
Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin, Madison 53706.
J Biol Chem. 1992 Feb 25;267(6):4215-22.
As an early step in DNA strand exchange reactions, the recA protein aligns homologous sequences within two DNA molecules to form a putative triple-stranded intermediate. In virtually all models for three-stranded DNA proposed to date, hydrogen bonds involving the N-7 position of guanine have played a prominent structural role. To determine whether the N-7 position of guanine is required for triple helix and heteroduplex formation in the recA protein-mediated DNA pairing reaction, guanine was completely replaced by the base analog 7-deazaguanine in both strands of the duplex DNA substrate using polymerase chain reaction. This modified double-strand DNA was reacted with unmodified single-strand DNA in vitro. The 7-deazaguanine-substituted DNA functioned as well as the unsubstituted DNA in recA protein-mediated DNA three-strand exchange reactions. Strand exchange reactions involving four strands also proceeded normally when three of the four strands contained 7-deazaguanine rather than guanine. In fact, the rate of strand exchange improved somewhat when the modified DNA substrates were used. This indicates either that the N-7 position of guanine is not essential for the formation of the putative triple-stranded DNA pairing intermediate, or that a three-stranded (or four-stranded) structure is not an obligate intermediate in recA protein-mediated DNA strand exchange.
作为DNA链交换反应的早期步骤,RecA蛋白使两个DNA分子内的同源序列对齐,以形成一种假定的三链中间体。在迄今为止提出的几乎所有三链DNA模型中,涉及鸟嘌呤N-7位置的氢键都发挥了重要的结构作用。为了确定在RecA蛋白介导的DNA配对反应中三链螺旋和异源双链形成是否需要鸟嘌呤的N-7位置,使用聚合酶链反应在双链DNA底物的两条链中将鸟嘌呤完全替换为碱基类似物7-脱氮鸟嘌呤。这种修饰的双链DNA在体外与未修饰的单链DNA反应。在RecA蛋白介导的DNA三链交换反应中,7-脱氮鸟嘌呤取代的DNA与未取代的DNA功能相同。当四条链中的三条含有7-脱氮鸟嘌呤而不是鸟嘌呤时,涉及四条链的链交换反应也正常进行。事实上,使用修饰的DNA底物时,链交换速率有所提高。这表明要么鸟嘌呤的N-7位置对于假定的三链DNA配对中间体的形成不是必需的,要么三链(或四链)结构不是RecA蛋白介导的DNA链交换中的 obligate中间体。 (注:“obligate”此处未准确对应中文词汇,可能影响理解,可进一步结合专业知识准确解读)