Epigenetics and Stem Cell Unit, Translational Gerontology Branch, National Institute on Aging, NIH, BRC, 251 Bayview Blvd, Suite 100/10C220, Baltimore, MD, 21224, USA.
Hum Genet. 2020 Mar;139(3):309-331. doi: 10.1007/s00439-019-02047-z. Epub 2019 Jul 19.
DNA damage is one of the most consistent cellular process proposed to contribute to aging. The maintenance of genomic and epigenomic integrity is critical for proper function of cells and tissues throughout life, and this homeostasis is under constant strain from both extrinsic and intrinsic insults. Considering the relationship between lifespan and genotoxic burden, it is plausible that the longest-lived cellular populations would face an accumulation of DNA damage over time. Tissue-specific stem cells are multipotent populations residing in localized niches and are responsible for maintaining all lineages of their resident tissue/system throughout life. However, many of these stem cells are impacted by genotoxic stress. Several factors may dictate the specific stem cell population response to DNA damage, including the niche location, life history, and fate decisions after damage accrual. This leads to differential handling of DNA damage in different stem cell compartments. Given the importance of adult stem cells in preserving normal tissue function during an individual's lifetime, DNA damage sensitivity and accumulation in these compartments could have crucial implications for aging. Despite this, more support for direct functional effects driven by accumulated DNA damage in adult stem cell compartments is needed. This review will present current evidence for the accumulation and potential influence of DNA damage in adult tissue-specific stem cells and propose inquiry directions that could benefit individual healthspan.
DNA 损伤是导致衰老的最常见的细胞过程之一。基因组和表观基因组完整性的维持对于细胞和组织的正常功能至关重要,这种内稳状态受到内外因素的持续压力。考虑到寿命和遗传毒性负担之间的关系,可以合理地认为寿命最长的细胞群体随着时间的推移会积累 DNA 损伤。组织特异性干细胞是多能细胞群体,存在于局部龛位中,负责在整个生命周期中维持其驻留组织/系统的所有谱系。然而,许多这些干细胞受到遗传毒性应激的影响。几个因素可能决定了特定干细胞群体对 DNA 损伤的反应,包括龛位位置、生活史以及损伤累积后的命运决定。这导致了不同干细胞隔间中 DNA 损伤的不同处理。鉴于成年干细胞在个体一生中维持正常组织功能的重要性,这些隔间中 DNA 损伤的敏感性和积累可能对衰老有至关重要的影响。尽管如此,仍需要更多支持由成年干细胞隔间中累积 DNA 损伤驱动的直接功能效应的证据。本综述将介绍目前关于成年组织特异性干细胞中 DNA 损伤积累及其潜在影响的证据,并提出可能有益于个体健康寿命的探究方向。