Rosenstein B S, Subramanian D, Muller M T
The Department of Radiation Oncology, Mount Sinai School of Medicine of the City University of New York, New York 10029, USA.
Radiat Res. 1997 Dec;148(6):575-9.
Exposure of GM 4390 human skin fibroblasts and ICR 2A frog cells to 10 kJ m(-2) of ultraviolet B (UVB) radiation resulted in the formation of DNA-protein crosslinks (DPCs) and DNA single-strand breaks (SSBs). However, upon incubation, there were rapid increases in the yields of both DPCs and SSBs. An enhancement in these DNA alterations was detected within 12 min after irradiation and their levels continued to rise by 5-8-fold within 15 h after exposure to UV radiation. Using an antibody-based assay that measures covalent complex formation between topoisomerase (topo) I and genomic DNA, it was found that topo I is one of the proteins involved in these DPCs induced by UV radiation. The levels and rate of increase of topo I-DNA covalent complexes were similar to the UV-radiation-dependent formation of DPCs and SSBs. A UV-radiation-sensitive mutant frog cell line, DRP 153, was also examined and was found to be deficient in this induction of DPCs and SSBs by UV radiation. When these cells were transfected with the human SUVCC3 gene, the resulting transformant displayed kinetics for the induction of DPCs and SSBs similar to the human and parental frog cells. However, human topo I was not defected in the transformed frog cells, indicating that SUVCC3 does not encode topo I. It is likely that SUVCC3 encodes an associated enzymatic activity which permits normal stimulation of topo I-DNA covalent complexes in UV-irradiated cells.
将GM 4390人皮肤成纤维细胞和ICR 2A蛙细胞暴露于10 kJ m(-2)的紫外线B(UVB)辐射下,会导致DNA - 蛋白质交联(DPCs)和DNA单链断裂(SSBs)的形成。然而,在孵育后,DPCs和SSBs的产量都迅速增加。在照射后12分钟内检测到这些DNA改变增强,并且在暴露于紫外线辐射后15小时内其水平持续上升5 - 8倍。使用基于抗体的检测方法来测量拓扑异构酶(topo)I与基因组DNA之间的共价复合物形成,发现topo I是参与紫外线辐射诱导的这些DPCs的蛋白质之一。topo I - DNA共价复合物的水平和增加速率与紫外线辐射依赖性DPCs和SSBs的形成相似。还检测了一种对紫外线辐射敏感的突变蛙细胞系DRP 153,发现其在紫外线辐射诱导的DPCs和SSBs方面存在缺陷。当这些细胞用人类SUVCC3基因转染时,所得转化体诱导DPCs和SSBs的动力学与人类细胞和蛙亲本细胞相似。然而,人类topo I在转化的蛙细胞中没有缺陷,这表明SUVCC3不编码topo I。很可能SUVCC3编码一种相关的酶活性,该活性允许在紫外线照射的细胞中正常刺激topo I - DNA共价复合物。