首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Frequency and types of spontaneous Hprt lymphocyte mutations in Pms2-deficient mice.
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Frequency and types of spontaneous Hprt lymphocyte mutations in Pms2-deficient mice.

机译:Pms2缺陷小鼠中自发性Hprt淋巴细胞突变的频率和类型。

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Deficiencies in DNA mismatch repair (MMR) result in predisposition to neoplasia in both rodents and humans. Pms2 is one of the several proteins involved in the eukaryotic MMR system. In order to determine the effect of Pms2-deficiency on mutation, we measured mutant frequencies in the endogenous Hprt gene of lymphocytes from male Pms2(-/-), Pms2(+/-), and Pms2(+/+) mice. Spleens were removed from mice of various ages and lymphocytes isolated from spleens were cultured to determine the frequency of 6-thioguanine-resistant mutants. Mean mutant frequencies in Pms2(-/-) mice at 6, 10, 18, and 34 weeks of age [42.6 x 10(-6) (n=6), 38.5 x 10(-6) (n=6), 58.2 x 10(-6) (n=9), and 49.1 x 10(-6) (n=5), respectively] were significantly higher than those of comparably aged Pms2(+/+) and Pms2(+/-) mice (all less than 3 x 10(-6)). Mutant clones from the mice were expanded, RNA extracted, and Hprt cDNA amplified by RT-PCR. DNA sequencing analysis of 221 mutant cDNAs from the three different Pms2 genotypes identified 182 clones with independent mutations, including five clones that contained multiple mutations. When compared to the mutational spectrum observed in Pms2(+/+) and Pms2(+/-) mice, the mutational spectrum for Pms2(-/-) mice was significantly different. The Pms2(-/-) mutational analysis indicated that loss of the Pms2 protein causes increases in the frequencies of strand-slippage-type frameshift mutations and of A:T --> G:C transitions in the Hprt gene. The absolute frequencies of A:T --> G:C transitions in MMR-deficient mice suggest increases in this mutation may be a common feature of MMR-deficient mice, not just of Pms2-deficient mice, and may be related to the cancer predisposition that results from loss of MMR function.
机译:DNA错配修复(MMR)的缺陷会导致啮齿动物和人类易患肿瘤。 Pms2是参与真核MMR系统的几种蛋白质之一。为了确定Pms2缺陷对突变的影响,我们测量了雄性Pms2(-/-),Pms2(+/-)和Pms2(+ / +)小鼠淋巴细胞内源性Hprt基因的突变频率。从各种年龄的小鼠中取出脾脏,并培养从脾脏中分离的淋巴细胞,以确定6-硫代鸟嘌呤抗性突变体的频率。在6、10、18和34周龄的Pms2(-/-)小鼠中的平均突变频率[42.6 x 10(-6)(n = 6),38.5 x 10(-6)(n = 6), 58.2 x 10(-6)(n = 9)和49.1 x 10(-6)(n = 5)]显着高于同龄的Pms2(+ / +)和Pms2(+/-)小鼠(均小于3 x 10(-6))。扩增来自小鼠的突变克隆,提取RNA,并通过RT-PCR扩增Hprt cDNA。来自三种不同Pms2基因型的221个突变cDNA的DNA测序分析确定了182个具有独立突变的克隆,包括五个包含多个突变的克隆。当与在Pms2(+ / +)和Pms2(+/-)小鼠中观察到的突变谱相比时,Pms2(-/-)小鼠的突变谱显着不同。 Pms2(-/-)突变分析表明,Pms2蛋白的缺失会导致Hprt基因中链滑动型移码突变和A:T-> G:C转换的频率增加。 MMR缺陷小鼠中A:T-> G:C转换的绝对频率表明,这种突变的增加可能是MMR缺陷小鼠的共同特征,而不仅仅是Pms2缺陷小鼠,并且可能与癌症有关MMR功能丧失导致的易感性。

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