Department of Dermatology and Allergic Diseases, University of Ulm, 89091 Ulm, Germany.
Nature. 2013 Nov 21;503(7476):392-6. doi: 10.1038/nature12631. Epub 2013 Oct 20.
Many organs with a high cell turnover (for example, skin, intestine and blood) are composed of short-lived cells that require continuous replenishment by somatic stem cells. Ageing results in the inability of these tissues to maintain homeostasis and it is believed that somatic stem-cell ageing is one underlying cause of tissue attrition with age or age-related diseases. Ageing of haematopoietic stem cells (HSCs) is associated with impaired haematopoiesis in the elderly. Despite a large amount of data describing the decline of HSC function on ageing, the molecular mechanisms of this process remain largely unknown, which precludes rational approaches to attenuate stem-cell ageing. Here we report an unexpected shift from canonical to non-canonical Wnt signalling in mice due to elevated expression of Wnt5a in aged HSCs, which causes stem-cell ageing. Wnt5a treatment of young HSCs induces ageing-associated stem-cell apolarity, reduction of regenerative capacity and an ageing-like myeloid-lymphoid differentiation skewing via activation of the small Rho GTPase Cdc42. Conversely, Wnt5a haploinsufficiency attenuates HSC ageing, whereas stem-cell-intrinsic reduction of Wnt5a expression results in functionally rejuvenated aged HSCs. Our data demonstrate a critical role for stem-cell-intrinsic non-canonical Wnt5a signalling in HSC ageing.
许多具有高细胞更新率的器官(例如皮肤、肠道和血液)由寿命短的细胞组成,这些细胞需要体干细胞的持续补充。随着年龄的增长,这些组织无法维持体内平衡,人们认为体干细胞衰老是组织随着年龄或与年龄相关的疾病而减少的一个潜在原因。造血干细胞(HSCs)的衰老与老年人造血功能受损有关。尽管有大量数据描述了 HSC 功能随年龄增长而下降,但这一过程的分子机制在很大程度上仍不清楚,这使得人们无法采取合理的方法来减缓干细胞衰老。在这里,我们报告了由于年老的 HSCs 中 Wnt5a 表达升高,导致经典 Wnt 信号向非经典 Wnt 信号的意外转变,从而导致干细胞衰老。Wnt5a 处理年轻的 HSCs 会通过激活小 Rho GTPase Cdc42 诱导与衰老相关的干细胞极性丧失、再生能力降低和类似衰老的骨髓-淋巴分化偏向。相反,Wnt5a 杂合不足会减轻 HSC 衰老,而干细胞内源性 Wnt5a 表达的减少会导致功能上恢复活力的衰老 HSCs。我们的数据表明,干细胞内源性非经典 Wnt5a 信号在 HSC 衰老中起着关键作用。