Jwang B, Radding C M
Department of Genetics, Yale University School of Medicine, New Haven, CT 06510.
Proc Natl Acad Sci U S A. 1992 Aug 15;89(16):7596-600. doi: 10.1073/pnas.89.16.7596.
Previous studies have shown that the helical RecA nucleoprotein filament formed on a circular single strand of DNA causes the progressive, directional transfer of a complementary strand from naked linear duplex DNA to the nucleoprotein filament, even when the duplex contains a sizable heterologous insertion. Since RecA protein lacks demonstrable helicase activity, the mechanism by which it pushes strand exchange through long heterologous inserts has been a quandary. In the present study, a linear duplex substrate with an insertion of 110 base pairs in its middle yielded the expected products, whereas much less of the heteroduplex product was seen when the insertion was located at either end of the duplex substrate or 160 base pairs from the far end of the duplex substrate. In an ongoing reaction of the substrate with an insertion in its middle, P1 nuclease cleaved intermediates from the point of the insertion to various distal sites. Acting on a duplex substrate that contained a single nick located in the complementary strand just beyond the insertion, RecA protein formed joint molecules but failed to complete strand exchange. These data show that negative torsional stress is generated by distant homologous interactions that occur beyond the heterologous insertion and that such stress is essential for unwinding a heterologous insertion that otherwise halts strand exchange.
先前的研究表明,在环状单链DNA上形成的螺旋状RecA核蛋白丝会导致互补链从裸露的线性双链DNA逐步、定向地转移到核蛋白丝上,即使双链中含有相当大的异源插入片段。由于RecA蛋白缺乏可证明的解旋酶活性,其推动链交换通过长异源插入片段的机制一直是个难题。在本研究中,在中间插入110个碱基对的线性双链底物产生了预期的产物,而当插入位于双链底物的两端或距双链底物远端160个碱基对处时,观察到的异源双链产物要少得多。在底物中间有插入片段的持续反应中,P1核酸酶从插入点切割中间体到各个远端位点。作用于在互补链中恰好在插入片段之外有一个单切口的双链底物时,RecA蛋白形成了连接分子,但未能完成链交换。这些数据表明,负扭转应力是由异源插入片段之外发生的远距离同源相互作用产生的,并且这种应力对于解开否则会阻止链交换的异源插入片段至关重要。