Reddy G, Burnett B, Radding C M
Department of Genetics, Yale University School of Medicine, New Haven, Connecticut 06510, USA.
Biochemistry. 1995 Aug 15;34(32):10194-204. doi: 10.1021/bi00032a013.
In the polarized strand exchange that is promoted by Escherichia coli RecA protein, when the initiating end of a duplex DNA molecule is blocked by heterology, the homologous distal end nonetheless forms a joint with single-stranded DNA, but strand exchange in that joint cannot be completed because the strand that would otherwise be displaced lacks a free 5' end. Instead, 2/3 to 3/4 of such distal joints cyclically form and dissociate. Dissociation requires the hydrolysis of ATP (Burnett et al., 1994). Observations on DNase protection revealed that consistent with their dynamic nature, these joints were heterogeneous in length, extending from the labeled distal end of the duplex up to 600 base pairs within the homologous region. Switching of base pairs was undetectable in this fraction of distal joints. However, the other 1/3 to 1/4 of distal joints, which did not cycle, were as long as the entire homologous region (6 kb), and underwent complete switching of base pairs. The formation of these static joints occurred at a rate in excess of 100 bp per second, without requiring hydrolysis of ATP. These and earlier observations suggest that the RecA filament containing single-stranded DNA rapidly incorporates duplex DNA into a coaxial three-stranded helix by a passive process, whereas additional energy is required to convert the three-stranded intermediate into products or back into substrates, both of which involve the unwinding of many turns of three-stranded helix.
在由大肠杆菌RecA蛋白促进的极化链交换过程中,当双链DNA分子的起始端被异源序列阻断时,同源的远端仍会与单链DNA形成接头,但该接头中的链交换无法完成,因为原本会被置换的链缺乏游离的5'端。相反,此类远端接头中有2/3至3/4会周期性地形成和解离。解离需要ATP水解(伯内特等人,1994年)。对DNase保护的观察表明,与它们的动态性质一致,这些接头长度各异,从双链的标记远端延伸至同源区域内达600个碱基对。在这部分远端接头中未检测到碱基对的切换。然而,另外1/3至1/4不发生循环的远端接头,其长度与整个同源区域(6 kb)相同,并经历了碱基对的完全切换。这些静态接头的形成速度超过每秒100个碱基对,且无需ATP水解。这些以及早期的观察结果表明,含有单链DNA的RecA细丝通过一个被动过程将双链DNA快速纳入同轴三链螺旋中,而将三链中间体转化为产物或变回底物都需要额外的能量,这两者都涉及解开多圈三链螺旋。