Wang T C, Chang H Y, Hung J L
Department of Molecular Biology, Chang Gung Medical College, Kwei-San, Tao-Yuan, Taiwan.
Mutat Res. 1993 Aug;294(2):157-66. doi: 10.1016/0921-8777(93)90024-b.
The ability of recA718, recA720, recA730, recA750 and two known recA(Srf) alleles (recA2020 and recA441) to act as suppressors of recF, recR and recO mutations was examined by studying their UV radiation sensitivity in uvrA cells of Escherichia coli. With the exception of recA718, all the mutant recA alleles examined were able to suppress the UV radiation sensitivity caused by recF, recR or recO mutations, but not by the recB mutation. The suppression by recA750 was minimal. The suppression of recF, recR and recO mutations by other recA alleles was more pronounced, but none of them could exert full suppression. Heterozygotes containing a mutant recA allele (recA720, recA730 or recA441) and recA2020 (or recA803, another known recA(Srf) allele) failed to produce any additive or synergistic suppression of recF, indicating that these suppressors did not use different mechanisms for their suppression. Similar to a requirement of recJ+ in the suppression of recF, the suppression of recR and recO mutations by mutant recA alleles also required recJ+. The similar phenotypes conferred by recF, recR, and recO mutations and the observations that a number of mutant recA alleles can cosuppress these three mutations suggest that the recF, recR and recO gene products may function together as a complex.
通过研究recA718、recA720、recA730、recA750以及两个已知的recA(Srf)等位基因(recA2020和recA441)在大肠杆菌uvrA细胞中的紫外线辐射敏感性,检测了它们作为recF、recR和recO突变抑制子的能力。除recA718外,所有检测的recA突变等位基因都能够抑制由recF、recR或recO突变引起的紫外线辐射敏感性,但不能抑制recB突变引起的敏感性。recA750的抑制作用最小。其他recA等位基因对recF、recR和recO突变的抑制作用更明显,但都不能完全抑制。含有突变recA等位基因(recA720、recA730或recA441)和recA2020(或recA803,另一个已知的recA(Srf)等位基因)的杂合子未能对recF产生任何累加或协同抑制作用,这表明这些抑制子在抑制过程中没有使用不同的机制。与recJ+在recF抑制中的需求类似,突变recA等位基因对recR和recO突变的抑制也需要recJ+。recF、recR和recO突变赋予相似的表型,并且一些突变recA等位基因能够共抑制这三个突变,这些观察结果表明recF、recR和recO基因产物可能作为一个复合物共同发挥作用。