Rasko I, Georgieva M, Farkas G, Santha M, Coates J, Burg K, Mitchell D L, Johnson R T
Genetics Institute, Hungarian Academy of Sciences, Szeged.
Somat Cell Mol Genet. 1993 May;19(3):245-55. doi: 10.1007/BF01233072.
Mouse embryocarcinoma stem cells differentiate in culture, given the appropriate induction. We examined whether these cells could provide information about the regulation of nucleotide excision repair in relation to differentiation by measuring the rate-limiting incision step, the removal of cyclobutane dimers and (6-4) photoproducts from the genome as a whole and the effect of the bacteriophage T4 endonuclease (denV) gene on repair in differentiated cells. It was found that differentiation is accompanied by a marked decline in the early incision ability after UV irradiation (sixfold for P19, fourfold for PCC7 and twofold for F9), and we measured, in parallel, the loss of two common UV photoproducts [cyclobutane dimers and (6-4) photoproducts] from P19 cells. After differentiation, the excellent overall cyclobutane dimer repair capacity of proliferating cells (84% removal in 24 h) is lost (no removal in 24 h), while removal of (6-4) photoproducts, although normal at 24 h (94%), is much slower than in undifferentiated P19 at 3 h (no removal versus 64%). The presence of the denV gene greatly stimulates the repair of cyclobutane dimers in undifferentiated P19 cells (94% removal at 3 h versus 40%) and also in differentiated cells (50% removal at 24 h versus no removal). The denV gene also stimulates the early repair of (6-4) photoproducts in both differentiated and undifferentiated cells.
在适当的诱导条件下,小鼠胚胎癌细胞在培养中会发生分化。我们通过测量限速切割步骤、从整个基因组中去除环丁烷二聚体和(6-4)光产物以及噬菌体T4核酸内切酶(denV)基因对分化细胞修复的影响,研究了这些细胞是否能够提供有关核苷酸切除修复调控与分化相关的信息。结果发现,分化伴随着紫外线照射后早期切割能力的显著下降(P19细胞下降6倍,PCC7细胞下降4倍,F9细胞下降2倍),同时我们还测量了P19细胞中两种常见紫外线光产物[环丁烷二聚体和(6-4)光产物]的损失情况。分化后,增殖细胞出色的整体环丁烷二聚体修复能力(24小时内去除84%)丧失(24小时内无去除),而(6-4)光产物的去除虽然在24小时时正常(94%),但比未分化的P19细胞在3小时时慢得多(3小时时无去除,而未分化的P19细胞为64%)。denV基因的存在极大地刺激了未分化P19细胞中环丁烷二聚体的修复(3小时时去除94%,而未处理时为40%),在分化细胞中也是如此(24小时时去除50%,而未处理时无去除)。denV基因还刺激了分化和未分化细胞中(6-4)光产物的早期修复。