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首页> 外文期刊>Stem Cells >Cell Autonomous and Nonautonomous Mechanisms Drive Hematopoietic Stem/progenitor Cell Loss in the Absence of DNA Repair.
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Cell Autonomous and Nonautonomous Mechanisms Drive Hematopoietic Stem/progenitor Cell Loss in the Absence of DNA Repair.

机译:在没有DNA修复的情况下,细胞自主和非自主机制驱动造血干/祖细胞丢失。

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Daily, cells incur tens of thousands of DNA lesions caused by endogenous processes. Due to their long-lived nature, adult stem cells may be particularly susceptible to the negative impact of this constant genotoxic stress. Indeed, in murine models of DNA repair deficiencies, there is accumulation of DNA damage in hematopoietic stem cells and premature loss of function. Herein, we demonstrate that mice expressing reduced levels of ERCC1-XPF DNA repair endonuclease (Ercc1-/Δ mice) spontaneously display a progressive decline in the number and function of hematopoietic stem/progenitor cells (HSPCs). This was accompanied by increased cell death, expression of senescence markers, reactive oxygen species, and DNA damage in HSPC populations, illustrating cell autonomous mechanisms that contribute to loss of function. In addition, the bone marrow microenvironment of Ercc1-/Δ mice was not permissive for the engraftment of transplanted normal stem cells. Bones from Ercc1-/Δ mice displayed excessive osteoclastic activity, which alters the microenvironment in a way that is unfavorable to HSPC maintenance. This was accompanied by increased proinflammatory cytokines in the bone marrow of Ercc1-/Δ mice. These data provide novel evidence that spontaneous, endogenous DNA damage, if not repaired, promotes progressive attrition of adult stem cells via both cell autonomous and nonautonomous mechanisms. STEM CELLS2013;31:511-525.
机译:每天,细胞都会因内源性过程引起数以万计的DNA损伤。由于它们的长寿命性质,成年干细胞可能特别容易受到这种持续的遗传毒性压力的负面影响。确实,在鼠类的DNA修复缺陷模型中,造血干细胞中存在DNA损伤积累和功能过早丧失。在本文中,我们证明了表达降低水平的ERCC1-XPF DNA修复核酸内切酶的小鼠(Ercc1- /Δ小鼠)自发地表现出造血干/祖细胞(HSPC)数量和功能的逐渐下降。这伴随着HSPC群体中细胞死亡的增加,衰老标志物的表达,活性氧的种类以及DNA损伤,说明了导致功能丧失的细胞自主机制。此外,Ercc1- /Δ小鼠的骨髓微环境不适用于移植的正常干细胞。 Ercc1- /Δ小鼠的骨骼显示出过度的破骨细胞活性,从而以不利于HSPC维护的方式改变了微环境。这伴随着Ercc1- /Δ小鼠的骨髓中促炎细胞因子的增加。这些数据提供了新的证据,即自发的,内源性的DNA损伤(如果未修复)会通过细胞自主和非自主机制促进成年干细胞的逐渐磨损。 STEM CELLS2013; 31:511-525。

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