Kahn R, Cunningham R P, DasGupta C, Radding C M
Proc Natl Acad Sci U S A. 1981 Aug;78(8):4786-90. doi: 10.1073/pnas.78.8.4786.
When recA protein pairs circular single strands with linear duplex DNA, the circular strand displaces its homolog from only one end of the duplex molecule and rapidly creates heteroduplex joints that are thousands of base pairs long [DasGupta, C., Shibata, T., Cunningham, R. P. & Radding, C. M. (1980) Cell 22, 437-446]. To examine this apparently polar reaction, we prepared chimeric duplex fragments of DNA that had M13 nucleotide sequences at one end and G4 sequences at the other. Circular single strands homologous to M13 DNA paired with a chimeric fragment when M13 sequences were located at the 3' end of the complementary strand but did not pair when the M13 sequences were located at the 5' end. Likewise circular single-stranded G4 DNA paired with chimeric fragments only when G4 sequences were located at the 3' end of the complementary strand. To confirm these observations, we prepared fd DNA labeled only at the 5' or 3' end of the plus strand, and we examined the susceptibility of these labeled ends to digestion by exonucleases when joint molecules were formed. Eighty percent of the 5' label in joint molecules became sensitive to exonuclease VII. Displacement of that 5' end by recA protein was concerted because it did not occur in the absence of single-stranded DNA or in the presence of heterologous single strands. By contrast, only a small fraction of the 3' label became sensitive to exonuclease VII or exonuclease I. These observations show that recA protein forms heteroduplex joints in a concerted and polarized way.
当RecA蛋白使环状单链与线性双链DNA配对时,环状链仅从双链分子的一端取代其同源链,并迅速形成数千个碱基对长的异源双链接头[DasGupta, C., Shibata, T., Cunningham, R. P. & Radding, C. M. (1980) Cell 22, 437 - 446]。为了研究这种明显的极性反应,我们制备了两端分别具有M13核苷酸序列和G4序列的嵌合双链DNA片段。当M13序列位于互补链的3'端时,与M13 DNA同源的环状单链与嵌合片段配对,但当M13序列位于5'端时则不配对。同样,环状单链G4 DNA仅在G4序列位于互补链的3'端时与嵌合片段配对。为了证实这些观察结果,我们制备了仅在正链的5'或3'端标记的fd DNA,并在形成接头分子时检查了这些标记末端对外切核酸酶消化的敏感性。接头分子中80%的5'标记对外切核酸酶VII变得敏感。RecA蛋白对该5'端的取代是协同进行的,因为在没有单链DNA或存在异源单链的情况下不会发生这种情况。相比之下,只有一小部分3'标记对外切核酸酶VII或外切核酸酶I变得敏感。这些观察结果表明,RecA蛋白以协同和极化的方式形成异源双链接头。