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Programmed cell senescence during mammalian embryonic development

机译:哺乳动物胚胎发育过程中的程序性细胞衰老

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Cellular senescence disables proliferation in damaged cells, and it is relevant for cancer and aging. Here, we show that senescence occurs during mammalian embryonic development at multiple locations, including the mesonephros and the endolymphatic sac of the inner ear, which we have analyzed in detail. Mechanistically, senescence in both structures is strictly dependent on p21, but independent of DNA damage, p53, or other cell-cycle inhibitors, and it is regulated by the TGF-β/SMAD and PI3K/FOXO pathways. Developmentally programmed senescence is followed by macrophage infiltration, clearance of senescent cells, and tissue remodeling. Loss of senescence due to the absence of p21 is partially compensated by apoptosis but still results in detectable developmental abnormalities. Importantly, the mesonephros and endolymphatic sac of human embryos also show evidence of senescence. We conclude that the role of developmentally programmed senescence is to promote tissue remodeling and propose that this is the evolutionary origin of damage-induced senescence.
机译:细胞衰老会破坏受损细胞的增殖,这与癌症和衰老有关。在这里,我们表明衰老发生在哺乳动物胚胎发育过程中的多个位置,包括中耳的中肾和内淋巴囊,我们对此进行了详细分析。从机理上讲,两个结构中的衰老都严格依赖于p21,但与DNA损伤,p53或其他细胞周期抑制剂无关,并且受TGF-β/ SMAD和PI3K / FOXO途径调控。发育性程序性衰老后是巨噬细胞浸润,衰老细胞清除和组织重塑。由于不存在p21而导致的衰老丧失可以通过细胞凋亡得到部分补偿,但仍会导致可检测到的发育异常。重要的是,人类胚胎的中肾和内淋巴囊也显示出衰老的迹象。我们得出结论,发育程序性衰老的作用是促进组织重塑,并提出这是损伤诱导衰老的进化起源。

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