Yasui L S, Ling-Indeck L, Johnson-Wint B, Fink T J, Molsen D
Northern Illinois University, Department of Biological Sciences, DeKalb 60115-2861.
Radiat Res. 1991 Sep;127(3):269-77.
The structural organization of the cell nucleus was investigated by transmission electron microscopy in the radiosensitive Chinese hamster ovary (CHO) cell mutant, xrs-5 (D0 = 45 cGy), relative to parental K1 cells (D0 = 200 cGy). In 99% of all xrs-5 cells, the outer layer of the nuclear envelope was separated from the inner layer, while 96% of K1 cells had closely apposed layers. This separation of the inner and outer layers of the nuclear envelope in xrs-5 cells was not explained by an increased susceptibility of xrs-5 cells to osmotically induced changes because (1) xrs-5 cells retained the altered nuclear periphery even when several different fixation protocols were used and (2) xrs-5 cells were not more susceptible to cell lysis as measured by trypan blue dye exclusion or by the extracellular presence of lactate dehydrogenase. The difference in the morphological organization in the nuclear periphery of xrs-5 cells correlated with the radiation sensitivity of the cells; xrs-5 cells which spontaneously reverted to a radiation sensitivity similar to that of K1 cells also reverted to a nuclear morphology similar to that of K1 cells. The inner and outer layers of the nuclear envelope were retained in nuclear scaffolds isolated from K1 and xrs-5 cells, indicating that components of the nuclear periphery are part of the nuclear scaffold. These data show that xrs-5 cells have an altered nuclear periphery which correlates with the radiation sensitivity of the cells. The separation of the layers of the nuclear envelope may represent an altered template for repair of DNA damage at the nuclear scaffold and thus may play a role in the defective repair of X-ray-induced DNA double-strand breaks in xrs-5 cells.
通过透射电子显微镜对辐射敏感的中国仓鼠卵巢(CHO)细胞突变体xrs - 5(D0 = 45 cGy)相对于亲本K1细胞(D0 = 200 cGy)的细胞核结构组织进行了研究。在所有xrs - 5细胞中,99%的细胞核膜外层与内层分离,而96%的K1细胞的核膜层紧密贴合。xrs - 5细胞核膜内外层的分离并非由xrs - 5细胞对渗透压诱导变化的易感性增加所解释,因为:(1)即使使用几种不同的固定方案,xrs - 5细胞仍保持改变的核周边;(2)通过台盼蓝染料排斥或乳酸脱氢酶的细胞外存在来衡量,xrs - 5细胞对细胞裂解并不更敏感。xrs - 5细胞核周边形态组织的差异与细胞的辐射敏感性相关;自发恢复到与K1细胞相似辐射敏感性的xrs - 5细胞也恢复到与K1细胞相似的核形态。从K1和xrs - 5细胞分离的核支架中保留了核膜的内层和外层,表明核周边的成分是核支架的一部分。这些数据表明,xrs - 5细胞具有改变的核周边,这与细胞的辐射敏感性相关。核膜层的分离可能代表了核支架上DNA损伤修复的改变模板,因此可能在xrs - 5细胞中X射线诱导的DNA双链断裂的缺陷修复中起作用。