Lee-Chen S F, Yu C T, Wu D R, Jan K Y
Institute of Zoology, Academia Sinica, Taipei, Taiwan, Republic of China.
Environ Mol Mutagen. 1994;23(2):116-20. doi: 10.1002/em.2850230207.
When Chinese hamster ovary cells were treated with ultraviolet (UV) light or methyl methanesulfonate (MMS), a large number of DNA strand breaks could be detected by alkaline elution. These strand breaks gradually disappeared if the treated cells were allowed to recover in a drug-free medium. The presence of nickel or arsenite during the recovery incubation retarded the disappearance of UV-induced strand breaks, whereas the disappearance of MMS-induced strand breaks was retarded by the presence of arsenite or of luminol, a new inhibitor for poly(ADP-ribose) synthetase. Luminol, however, had no apparent effect on the repair of UV-induced DNA strand breaks, and nickel had no effect on the repair of MMS-induced DNA strand breaks. When UV- or MMS-treated cells were incubated in cytosine arabinofuranoside (AraC) plus hydroxyurea (HU), a large amount of low molecular weight DNA was detected by alkaline sucrose sedimentation. The molecular weight of these DNAs increased if the cells were further incubated in a drug-free medium. This rejoining of breaks in cells pretreated with UV plus AraC and HU was inhibited by nickel and by arsenite, but not by luminol. The rejoining of breaks in cells pretreated with MMS plus AraC and HU was inhibited by luminol and by arsenite, but not by nickel. These results suggest that different enzymes may be used in DNA resynthesis and/or ligation during the repairing of UV- and MMS-induced DNA strand breaks, and that nickel, luminol, and arsenite may have differential inhibitory effects on these enzymes.
当用紫外线(UV)或甲基磺酸甲酯(MMS)处理中国仓鼠卵巢细胞时,通过碱性洗脱可检测到大量DNA链断裂。如果将处理过的细胞置于无药物培养基中恢复,这些链断裂会逐渐消失。在恢复培养期间存在镍或亚砷酸盐会延迟UV诱导的链断裂的消失,而亚砷酸盐或鲁米诺(一种聚(ADP - 核糖)合成酶的新抑制剂)的存在会延迟MMS诱导的链断裂的消失。然而,鲁米诺对UV诱导的DNA链断裂的修复没有明显影响,镍对MMS诱导的DNA链断裂的修复也没有影响。当用UV或MMS处理的细胞在阿糖胞苷(AraC)加羟基脲(HU)中孵育时,通过碱性蔗糖沉降可检测到大量低分子量DNA。如果将细胞在无药物培养基中进一步孵育,这些DNA的分子量会增加。用UV加AraC和HU预处理的细胞中这种断裂的重新连接受到镍和亚砷酸盐的抑制,但不受鲁米诺的抑制。用MMS加AraC和HU预处理的细胞中断裂的重新连接受到鲁米诺和亚砷酸盐的抑制,但不受镍的抑制。这些结果表明,在修复UV和MMS诱导的DNA链断裂过程中,DNA再合成和/或连接可能使用不同的酶,并且镍、鲁米诺和亚砷酸盐可能对这些酶具有不同的抑制作用。