Mun B J, Mathews C K
Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331-6503.
Mol Cell Biol. 1991 Jan;11(1):20-6. doi: 10.1128/mcb.11.1.20-26.1991.
Deoxyribonucleotide pool imbalances are frequently mutagenic. We have studied two Chinese hamster ovary cell lines, Thy- 49 and Thy- 303, that were originally characterized by M. Meuth (Mol. Cell. Biol. 1:652-660, 1981). In comparison with wild-type CHO cells, both lines have elevated dCTP/dTTP ratios, resulting from loss of feedback control of CTP synthetase. While asynchronous cultures of both cell lines contain nearly identical deoxyribonucleoside triphosphate (dNTP) pools and both display elevated spontaneous mutation frequencies, the mutation frequencies between the two cell lines differ by as much as 10-fold. We asked whether differences in dNTP pools could be seen in extracts of rapidly isolated nuclei. Small differences, probably not large enough to account for the differences in mutation frequencies, were seen. However, when synchronized S-phase-enriched cell populations were examined, substantial differences were seen, both in whole-cell extracts and in nuclear extracts. Thy- 303 cells, which have higher mutation frequencies than do Thy- 49 cells, also showed the more aberrant dNTP pools. These data indicate that the Thy- 303 line contains a second mutation in addition to the mutation affecting CTP synthetase control. Evidence suggests that this putative second mutation affects an allosteric regulatory site of ribonucleotide reductase. The data on intranuclear dNTP pools in synchronized S-phase cells indicate that higher proportions of cellular dATP and dGTP are found in the nucleus than are corresponding amounts of dCTP and dGTP. Thus, despite the porous nature of the nuclear membrane, there are conditions under which the distributions of deoxyribonucleotides across this membrane are not random.
脱氧核苷酸库失衡常常具有致突变性。我们研究了两种中国仓鼠卵巢细胞系,Thy - 49和Thy - 303,它们最初由M. 缪思(《分子与细胞生物学》1:652 - 660, 1981)进行了特征描述。与野生型中国仓鼠卵巢细胞相比,这两种细胞系的dCTP/dTTP比值均升高,这是由于CTP合成酶的反馈控制缺失所致。虽然这两种细胞系的异步培养物含有几乎相同的脱氧核苷三磷酸(dNTP)库,且两者的自发突变频率均升高,但这两种细胞系之间的突变频率相差多达10倍。我们探究了在快速分离的细胞核提取物中是否能观察到dNTP库的差异。观察到了一些小差异,可能小到不足以解释突变频率的差异。然而,当检查同步化的富含S期的细胞群体时,在全细胞提取物和细胞核提取物中都观察到了显著差异。Thy - 303细胞的突变频率高于Thy - 49细胞,其dNTP库也表现出更异常的情况。这些数据表明,除了影响CTP合成酶控制的突变外,Thy - 303细胞系还含有第二个突变。有证据表明,这个假定的第二个突变影响核糖核苷酸还原酶的一个别构调节位点。关于同步化S期细胞内核dNTP库的数据表明,细胞核中细胞dATP和dGTP的比例高于相应的dCTP和dTTP。因此,尽管核膜具有多孔性,但在某些条件下,脱氧核苷酸跨此膜的分布并非随机。