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Apoptotic cells provide an unexpected source of Wnt3 signaling to drive hydra head regeneration.

机译:凋亡细胞提供了Wnt3信号的意外来源,以驱动水头再生。

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Decapitated Hydra regenerate their heads via morphallaxis, i.e., without significant contributions made by cell proliferation or interstitial stem cells. Indeed, Hydra depleted of interstitial stem cells regenerate robustly, and Wnt3 from epithelial cells triggers head regeneration. However, we find a different mechanism controlling regeneration after midgastric bisection in animals equipped with both epithelial and interstitial cell lineages. In this context, we see rapid induction of apoptosis and Wnt3 secretion among interstitial cells at the head- (but not foot-) regenerating site. Apoptosis is both necessary and sufficient to induce Wnt3 production and head regeneration, even at ectopic sites. Further, we identify a zone of proliferation beneath the apoptotic zone, reminiscent of proliferative blastemas in regenerating limbs and of compensatory proliferation induced by dying cells in Drosophila imaginal discs. We propose that different types of injuries induce distinct cellular modes of Hydra head regeneration, which nonetheless converge on a central effector, Wnt3.
机译:蜕皮的九头蛇通过吗啡轴再生其头部,即细胞增殖或间质干细胞无明显贡献。实际上,耗竭了间质干细胞的九头蛇能够强劲地再生,而来自上皮细胞的Wnt3会触发头部再生。但是,我们发现在同时具有上皮细胞和间质细胞谱系的动物中,胃中部分割后控制再生的机制不同。在这种情况下,我们看到在头(但不是脚)再生位点间质细胞之间凋亡和Wnt3分泌的快速诱导。即使在异位部位,凋亡也是诱导Wnt3产生和头部再生的必要和充分条件。此外,我们确定了凋亡区下方的增殖区,让人想起了再生肢体中的增生性母细胞以及果蝇假体盘中的垂死细胞诱导的代偿性增生。我们提出,不同类型的损伤会诱导九头蛇头部再生的不同细胞模式,但它们会聚在中央效应器Wnt3上。

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