Konforti B B, Davis R W
Department of Biochemistry, Stanford University Medical Center, CA 94305-5307.
J Mol Biol. 1992 Sep 5;227(1):38-53. doi: 10.1016/0022-2836(92)90680-i.
When the recA protein (RecA) of Escherichia coli promotes strand exchange between single-stranded DNA (ssDNA) circles and linear double-stranded DNAs (dsDNA) with complementary 5' or 3' ends a polarity is observed. This property of RecA depends on ATP hydrolysis and the ssDNA that is displaced in the reaction since no polarity is observed in the presence of the non-hydrolyzable ATP analog, ATP gamma S, or in the presence of single-strand specific exonucleases. Based on these results a model is presented in which both the 5' and 3' complementary ends of the linear dsDNA initiate pairing with the ssDNA circle but only one end remains stably paired. According to this model, the association/dissociation of RecA in the 5' to 3' direction on the displaced strand determines the polarity of strand exchange by favoring or blocking its reinvasion into the newly formed dsDNA. Reinvasion is favored when the displaced strand is coated with RecA whereas it is blocked when it lacks RecA, remains covered by single-stranded DNA binding protein or is removed by a single-strand specific exonuclease. The requirement for ATP hydrolysis is explained if the binding of RecA to the displaced strand occurs via the dissociation and/or transfer of RecA, two functions that depend on ATP hydrolysis. The energy for strand exchange derives from the higher binding constant of RecA for the newly formed dsDNA as compared with that for ssDNA and not from ATP hydrolysis.
当大肠杆菌的RecA蛋白(RecA)促进单链DNA(ssDNA)环与具有互补5'或3'末端的线性双链DNA(dsDNA)之间的链交换时,会观察到一种极性。RecA的这一特性取决于ATP水解以及反应中被置换的ssDNA,因为在存在不可水解的ATP类似物ATPγS时或在单链特异性核酸外切酶存在时未观察到极性。基于这些结果,提出了一个模型,其中线性dsDNA的5'和3'互补末端均起始与ssDNA环配对,但只有一端保持稳定配对。根据该模型,RecA在被置换链上沿5'至3'方向的缔合/解离通过促进或阻止其重新侵入新形成的dsDNA来决定链交换的极性。当被置换链被RecA覆盖时有利于重新侵入,而当它缺乏RecA、仍被单链DNA结合蛋白覆盖或被单链特异性核酸外切酶去除时则被阻止。如果RecA与被置换链的结合是通过RecA的解离和/或转移发生的,这两种功能都依赖于ATP水解,那么就可以解释对ATP水解的需求。链交换的能量来自RecA对新形成的dsDNA的结合常数高于对ssDNA的结合常数,而不是来自ATP水解。