Ishii C, Nakamura K, Inoue H
Department of Regulation Biology, Faculty of Science, Saitama University, Urawa, Japan.
Mol Gen Genet. 1991 Aug;228(1-2):33-9. doi: 10.1007/BF00282444.
A UV-sensitive mutant has been isolated from UV-mutagenized conidia of Neurospora crassa. The mutation responsible for the lesion was mapped in linkage group VL, proximal to the nucleolus organizer region. We designated the mutant mus-18. The sensitivity of the mus-18 mutant to UV-irradiation was not particularly high, being less than twice that of the wild-type strain. However, the frequency of mutations at the ad-3 loci induced by UV was extremely high even at low doses, under conditions where survival rates of mus-18 cells were almost identical to those of wild-type cells. Photo-reactivation of UV damage was normal in the mus-18 mutant. Sensitivity to other mutagens, such as gamma rays, 4-nitroquinoline-1-oxide, N-methyl-N'-nitro-N-nitrosoguanidine, mitomycin C and methyl methanesulfonate, was similar to that of the wild type. Fertility of the mus-18 mutant was normal in homozygous crosses. These results suggest that mus-18 is an excision-repair mutant. Measurement of endonuclease-sensitive sites (ESS) after liquid-holding recovery from UV damage revealed that ESS remained unrepaired for longer than 18 h in the mus-18 mutant, while most were eliminated within 6 h in wild-type cells and in other UV-sensitive mutants. This result suggests that mus-18 is defective in the incision step of dimer excision. The mus-18 mutant provides the first example of an excision-defective mutation in eukaryotes, which is specific to UV damage.
从经紫外线诱变的粗糙脉孢菌分生孢子中分离出了一个对紫外线敏感的突变体。导致该损伤的突变被定位在连锁群VL中,靠近核仁组织区。我们将该突变体命名为mus - 18。mus - 18突变体对紫外线照射的敏感性并非特别高,不到野生型菌株的两倍。然而,即使在低剂量下,在mus - 18细胞存活率与野生型细胞几乎相同的条件下,紫外线诱导的ad - 3位点的突变频率极高。mus - 18突变体中紫外线损伤的光复活作用正常。对其他诱变剂,如γ射线、4 - 硝基喹啉 - 1 - 氧化物、N - 甲基 - N' - 硝基 - N - 亚硝基胍、丝裂霉素C和甲基磺酸甲酯的敏感性与野生型相似。mus - 18突变体在纯合杂交中的育性正常。这些结果表明mus - 18是一个切除修复突变体。从紫外线损伤中进行液体保存恢复后对内切核酸酶敏感位点(ESS)的测量表明,在mus - 18突变体中,ESS在18小时以上仍未修复,而在野生型细胞和其他紫外线敏感突变体中,大多数在6小时内就被消除了。这一结果表明mus - 18在二聚体切除的切口步骤中存在缺陷。mus - 18突变体提供了真核生物中第一个切除缺陷突变的例子,该突变对紫外线损伤具有特异性。