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The Mesenchymal Niche of the Hair Follicle Induces Regeneration by Releasing Primed Progenitors from Inhibitory Effects of Quiescent Stem Cells

机译:毛囊的间充质位通过从静止的干细胞抑制作用释放引发的祖细胞诱导再生。

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Summary The mechanisms by which stem cell (SC) quiescence is regulated to allow normal regeneration are poorly understood. Here, we show that the mesenchymal niche of the hair follicle, the dermal papilla (DP), governs the properties of quiescent SCs in the bulge despite its relatively distant location. The DP induces regeneration by downregulating bulge-dependent inhibitory effects that restrain the intrinsic proliferation features of primed progenitors. Once regeneration initiates, the DP orchestrates Shh expression in primed-progenitor descendants by an autoregulatory circuit to restrict Shh expression to the DP vicinity and to confine Shh levels to act only on nearby cells. As the DP moves away from the bulge, quiescent SCs are exposed to Shh transiently. This ensures a short period of quiescent SC activation required for normal regeneration. Furthermore, our findings show that Shh signaling in the DP fine-tunes Wnt signaling activity and reveal the importance of signaling cross talk in coordinating regeneration pace.
机译:小结调节干细胞(SC)静止以使其正常再生的机制了解甚少。在这里,我们显示了毛囊的间质小生境,即真皮乳头(DP),尽管其位置相对较远,但仍控制着凸起中的静态SC的特性。 DP通过下调凸起引发的抑制作用来诱导再生,该抑制作用抑制了引发祖细胞的固有增殖特征。再生开始后,DP通过自动调节电路在启动的祖先后代中协调Shh表达,以将Shh表达限制在DP附近,并限制Shh水平仅作用于附近的细胞。当DP从凸起处移开时,静态SC会短暂暴露于Shh。这样可确保正常再生需要短暂的静态SC激活。此外,我们的研究结果表明,DP中的Shh信号传导可以微调Wnt信号传导活动,并揭示信号传导串扰在协调再生速度中的重要性。

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