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Maintenance of genomic integrity in embryonic cells is pivotal to proper embryogenesis, organogenesis and to the continuity of species. Cultured mouse embryonic stem cells (mESCs), a model for early embryonic cells, differ from cultured somatic cells in their capacity to remodel chromatin, in their repertoire of DNA repair enzymes, and in the regulation of cell cycle checkpoints. Using 129XC3HF1 mESCs heterozygous for Aprt, we characterized loss of Aprt heterozygosity after exposure to ionizing radiation. We report here that the frequency of loss of heterozygosity mutants in mESCs can be induced several hundred-fold by exposure to 5-10Gy of X-rays. This induction is 50-100-fold higher than the induction reported for mouse adult or embryonic fibroblasts. The primary mechanism underlying the elevated loss of heterozygosity after irradiation is mitotic recombination, with lesser contributions from deletions and gene conversions that span Aprt. Aprt point mutations and epigenetic inactivation are very rare in mESCs compared to fibroblasts. Mouse ESCs, therefore, are distinctive in their response to ionizing radiation and studies of differentiated cells may underestimate the mutagenic effects of ionizing radiation on ESC or other stem cells. Our findings are important to understanding the biological effects of ionizing radiation on early development and carcinogenesis.  相似文献   

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The fraction of hnRNA synthesized in the presence of DRB in uninfected HeLa cells ranges in size from 4S to over 45S. High molecular weight DRB-resistant hnRNA has been demonstrated to decay after 2 h of actinomycin D chase. This fraction is composed of both poly(A)(+) and poly(A)(-) RNA molecules. The synthesis in the presence of DRB of short polyadenylated hnRNA was also observed. The nature of both hnRNA subfractions is discussed.  相似文献   

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Two lines of evidence were obtained which indicate that inhibition of mRNA formation does not require the detectable accumulation of 5,6-dichloro-1-β-d-ribofuranosylbenzimidazole (DRB), a halogenated analog of adenosine. First, the extent of inhibition by DRB of the formation of cytoplasmic poly(A)+ RNA was as rapid and severe (>90% inhibition) in wild-type mouse lymphoma cells (S49) as in mutant cells (AE1), derived from S49, which were deficient in the transport of purine and pyrimidine nucleosides. Second, the accumulation of [3H]DRB was measured directly and compared to the accumulation of [3H]adenosine. Whereas S49 cells accumulated [3H]adenosine in a linear manner, neither S49 nor AE1 cells accumulated [3H]DRB to a significant extent. This suggests that inhibition of mRNA synthesis by DRB may (1) require the transport and intracellular accumulation of only minute amounts of DRB, or (2) result from secondary event(s) triggered by interaction of DRB with a surface membrane component.  相似文献   

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