Stem cell competition orchestrates skin homeostasis and ageing

干细胞 生物 老化 细胞生物学 平衡 遗传学
作者
Nan Liu,Hiroyuki Matsumura,Tomoki Kato,Shizuko Ichinose,Aki Takada,Takeshi Namiki,Kyosuke Asakawa,Hironobu Morinaga,Yasuaki Mohri,A. Laquerrière,Elisabeth Geroges-Labouesse,Daisuke Nanba,Emi K. Nishimura
出处
期刊:Nature [Springer Nature]
卷期号:568 (7752): 344-350 被引量:289
标识
DOI:10.1038/s41586-019-1085-7
摘要

Stem cells underlie tissue homeostasis, but their dynamics during ageing—and the relevance of these dynamics to organ ageing—remain unknown. Here we report that the expression of the hemidesmosome component collagen XVII (COL17A1) by epidermal stem cells fluctuates physiologically through genomic/oxidative stress-induced proteolysis, and that the resulting differential expression of COL17A1 in individual stem cells generates a driving force for cell competition. In vivo clonal analysis in mice and in vitro 3D modelling show that clones that express high levels of COL17A1, which divide symmetrically, outcompete and eliminate adjacent stressed clones that express low levels of COL17A1, which divide asymmetrically. Stem cells with higher potential or quality are thus selected for homeostasis, but their eventual loss of COL17A1 limits their competition, thereby causing ageing. The resultant hemidesmosome fragility and stem cell delamination deplete adjacent melanocytes and fibroblasts to promote skin ageing. Conversely, the forced maintenance of COL17A1 rescues skin organ ageing, thereby indicating potential angles for anti-ageing therapeutic intervention. COL17A1-driven stem cell competition and symmetric cell divisions initially govern skin homeostasis, but the same mechanisms result in skin ageing later in life.
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