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DNA Repair in Stem Ceil Maintenance and Conversion to Cancer Stem Cells

机译:DNA修复干细胞维持和转化为癌症干细胞

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Genomic stability is essential for cell and organism longevity. Without genomic stability, replication errors and external stress as well as direct forms of DNA damage can induce mutations, which decrease cell survival, cause altered gene expression, and can lead to cellular transformation. All represent the antithesis of maintenance of normal stem cell function. We argue here that genomic stability is essential for stem cell maintenance and longevity. This concept is supported by human diseases associated with premature aging and animal models of DNA damage repair abnormalities all of which lead to abnormalities of stem cell survival. Furthermore, with competitive repopula-tion, hematopoietic stem cell survival can be assessed in the face of DNA repair defects, and results from these studies support the general conclusion that chemotherapy and other forms of DNA damage lead to stem cell failure syndromes and malignant transformation most commonly along the myeloid and lymphoid pathways. Thus one origin of the cancer stem cell phenotype is the inability to maintain genomic stability among the stem cell population leading to mutational alterations and transformation. Capturing stem cells at this transition point represents an exciting field of discovery possibly leading to early detection and therapeutic interventions.
机译:基因组稳定性对于细胞和生物寿命至关重要。没有基因组稳定性,复制误差和外部应力以及直接形式的DNA损伤可以诱导减少细胞存活的突变,导致改变的基因表达,并且可以导致细胞转化。所有代表正常干细胞功能维持的对立性。我们在此辩论,基因组稳定性对于干细胞维护和寿命至关重要。这种概念由与早熟老龄化和DNA损伤修复的动物模型相关的人类疾病支持,所有这些疾病都会导致干细胞存活的异常。此外,通过竞争性呕吐,可以在DNA修复缺陷面前评估造血干细胞存活率,并且这些研究的结果支持一般的结论,即化疗和其他形式的DNA损伤导致干细胞衰竭综合征和最恶劣的转化通常沿髓样和淋巴途径。因此,癌症干细胞表型的一种起源是不能在导致突变变化和转化的干细胞群之间保持基因组稳定性。在该过渡点处捕获干细胞代表可能导致早期检测和治疗干预的令人兴奋的发现领域。

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