Maeshima K, Morimatsu K, Horii T
Department of Molecular Protozoology, Osaka University, Suita, Japan.
Genes Cells. 1996 Dec;1(12):1057-68. doi: 10.1046/j.1365-2443.1996.d01-224.x.
The RAD51 gene of Saccharomyces cerevisiae is homologous to the Escherichia coli recA gene and plays a key role in genetic recombination and DNA double-strand break repair. To construct an improved experimental system of homologous recombination in higher eukaryotes, we have chosen the South African clawed frog, Xenopus laevis, whose egg extracts might be useful for the in vitro studies. We identified and characterized a Xenopus homologue of RAD51 gene, the XRAD51.1.
Recombinant XRad51.1 was expressed in E. coli. The purified XRad51.1 protein showed ssDNA-dependent ATPase activity and promoted the DNA strand exchange reaction between two 55-mer oligonucleotides. The binding stoichiometry of XRad51.1 to ssDNA was determined by fluorescence of poly(d epsilonA), a chemically modified poly(dA), and was found to be about six bases/XRad51.1 monomer in a nucleoprotein filament, a similar value to E. coli RecA protein. The kinetics of the fluorescence change of poly(d epsilonA) after XRad51.1 binding in the presence of ATP was significantly different from that observed with RecA protein. The affinity of XRad51.1 to ssDNA in the presence of ATP was higher than that of RecA protein, and the dissociation of the XRad51.1-ssDNA complex was slower than the RecA-ssDNA complex.
Purified recombinant XRad51.1 protein promoted the strand exchange between short DNA molecules. While the binding stoichiometry of XRad51.1 protein to ssDNA was identical to that of the RecA protein, XRad51.1 has a significantly higher affinity and binding stability to ssDNA than did the RecA protein in the presence of ATP.
酿酒酵母的RAD51基因与大肠杆菌的recA基因同源,在基因重组和DNA双链断裂修复中起关键作用。为构建高等真核生物中改良的同源重组实验系统,我们选择了南非爪蟾,即非洲爪蟾,其卵提取物可能有助于体外研究。我们鉴定并表征了RAD51基因的非洲爪蟾同源物XRAD51.1。
重组XRad51.1在大肠杆菌中表达。纯化的XRad51.1蛋白显示出依赖于单链DNA的ATP酶活性,并促进了两条55聚体寡核苷酸之间的DNA链交换反应。通过化学修饰的聚(dεA)(一种聚(dA))的荧光测定了XRad51.1与单链DNA的结合化学计量,发现在核蛋白丝中约为六个碱基/XRad51.1单体,这一数值与大肠杆菌RecA蛋白相似。在ATP存在下XRad51.1结合后聚(dεA)荧光变化的动力学与RecA蛋白观察到的显著不同。在ATP存在下,XRad51.1对单链DNA的亲和力高于RecA蛋白,并且XRad51.1-单链DNA复合物的解离比RecA-单链DNA复合物慢。
纯化的重组XRad51.1蛋白促进了短DNA分子之间的链交换。虽然XRad51.1蛋白与单链DNA的结合化学计量与RecA蛋白相同,但在ATP存在下,XRad51.1对单链DNA的亲和力和结合稳定性明显高于RecA蛋白。