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Cell cycle heterogeneity in the small intestinal crypt and maintenance of genome integrity.

机译:小肠隐窝的细胞周期异质性和基因组完整性的维持。

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Stem cell quiescence has been hypothesized to suppress the rate at which genetic mutations accumulate within tissues by reducing the number of divisions a cell undergoes. However, recent studies have suggested that stem cells in the small intestine are rapidly dividing. This observation raises the issue of whether replication related errors are an important contributor to the accumulation of genetic damage and, if so, how genomic integrity is maintained within the small intestine. Here, reporter-marked small intestinal epithelial cells, resulting from mini-chromosome maintenance protein 2 (Mcm2) gene driven Cre-mediated recombination, are shown to be retained at the +1 position within the crypt and to contribute to the intestinal epithelia over long periods. Additionally, we show that the rate of cycling of +1 position Mcm2-expressing stem cells is heterogeneous with cycling times ranging between 1 and 4 days. Further, this heterogeneity depends on the p53 signaling pathway and could provide the basis for retention and expansion, through niche succession and crypt fission, of genetically intact stem cells. This somatic selection process would require active cellular replication.
机译:据推测,干细胞的静止可以通过减少细胞分裂的次数来抑制基因突变在组织内积累的速率。但是,最近的研究表明,小肠中的干细胞正在迅速分裂。这种观察提出了一个问题,即与复制有关的错误是否是遗传损伤积累的重要因素,如果是,则如何在小肠内维持基因组完整性。在这里,由微型染色体维持蛋白2(Mcm2)基因驱动的Cre介导的重组产生的记者标记的小肠上皮细胞显示保留在隐窝的+1位置,并在很长一段时间内对小肠上皮有贡献期。此外,我们显示+1位置Mcm2表达干细胞的循环速率异质,循环时间介于1-4天之间。此外,这种异质性取决于p53信号通路,并可以通过生态位继承和隐窝裂变为遗传上完整的干细胞提供保留和扩展的基础。这种体细胞选择过程将需要主动的细胞复制。

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