首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Injury-stimulated and self-restrained BMP signaling dynamically regulates stem cell pool size during Drosophila midgut regeneration
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PNAS Plus: Injury-stimulated and self-restrained BMP signaling dynamically regulates stem cell pool size during Drosophila midgut regeneration

机译:PNAS Plus:果蝇中肠再生过程中损伤刺激和自我约束的BMP信号动态调节干细胞池大小

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摘要

Many adult organs rely on resident stem cells to maintain homeostasis. Upon injury, stem cells increase proliferation, followed by lineage differentiation to replenish damaged cells. Whether stem cells also change division mode to transiently increase their population size as part of a regenerative program and, if so, what the underlying mechanism is have remained largely unexplored. Here we show that injury stimulates the production of two bone morphogenetic protein (BMP) ligands, Dpp and Gbb, which drive an expansion of intestinal stem cells (ISCs) by promoting their symmetric self-renewing division in Drosophila adult midgut. We find that BMP production in enterocytes is inhibited by BMP signaling itself, and that BMP autoinhibition is required for resetting ISC pool size to the homeostatic level after tissue repair. Our study suggests that dynamic BMP signaling controls ISC population size during midgut regeneration and reveals mechanisms that precisely control stem cell number in response to tissue needs.
机译:许多成年器官依靠常驻干细胞维持体内平衡。损伤后,干细胞增加增殖,然后沿谱系分化以补充受损细胞。干细胞是否也改变分裂模式,以作为再生程序的一部分,暂时增加其种群大小,如果是这样,其潜在机制究竟是什么,在很大程度上尚待探索。在这里,我们显示损伤刺激了两个骨形态发生蛋白(BMP)配体Dpp和Gbb的产生,它们通过促进果蝇成年中肠的对称自我更新分裂来驱动肠道干细胞(ISC)的扩展。我们发现肠细胞中BMP的产生受到BMP信号本身的抑制,并且BMP自动抑制是组织修复后将ISC池大小重置为体内水平所需的。我们的研究表明,动态BMP信号传导在中肠再生过程中控制ISC种群大小,并揭示了精确控制干细胞数量以响应组织需求的机制。

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