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Mechanical regulation of stem-cell differentiation by the stretch-activated Piezo channel

机译:拉伸激活的压电通道对干细胞分化的机械调节

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摘要

Somatic stem cells constantly adjust their self-renewal and lineage commitment by integrating various environmental cues to maintain tissue homeostasis. Although numerous chemical and biological signals have been identified that regulate stem-cell behaviour, whether stem cells can directly sense mechanical signals in vivo remains unclear(1). Here we show that mechanical stress regulates stem-cell differentiation in the adult Drosophila midgut through the stretch-activated ion channel Piezo. We find that Piezo is specifically expressed in previously unidentified enteroendocrine precursor cells, which have reduced proliferation ability and are destined to become enteroendocrine cells. Loss of Piezo activity reduces the generation of enteroendocrine cells in the adult midgut. In addition, ectopic expression of Piezo in all stem cells triggers both cell proliferation and enteroendocrine cell differentiation. Both the Piezo mutant and overexpression phenotypes can be rescued by manipulation of cytosolic Ca2+ levels, and increases in cytosolic Ca2+ resemble the Piezo overexpression phenotype, suggesting that Piezo functions through Ca2+ signalling. Further studies suggest that Ca2+ signalling promotes stem-cell proliferation and differentiation through separate pathways. Finally, Piezo is required for both mechanical activation of stem cells in a gut expansion assay and the increase of cytosolic Ca2+ in response to direct mechanical stimulus in a gut compression assay. Thus, our study demonstrates the existence of a specific group of stem cells in the fly midgut that can directly sense mechanical signals through Piezo.
机译:体细胞干细胞通过整合各种环境线索来维持组织动态平衡,从而不断调整其自我更新和谱系承诺。尽管已鉴定出许多调节干细胞行为的化学和生物学信号,但尚不清楚干细胞是否可以直接在体内感应机械信号(1)。在这里,我们显示机械应力通过拉伸激活的离子通道压电调节成人果蝇中肠的干细胞分化。我们发现,Piezo在先前未鉴定的肠内分泌前体细胞中特异性表达,其增殖能力降低,注定会变成肠内分泌细胞。压电活性的丧失减少了成年中肠中肠内分泌细胞的产生。此外,Piezo在所有干细胞中的异位表达会触发细胞增殖和肠内分泌细胞分化。压电突变体和过表达表型均可通过控制胞质Ca2 +水平来挽救,胞质Ca2 +的增加类似于压电过表达表型,表明压电通过Ca2 +信号传导发挥功能。进一步的研究表明,Ca 2+信号传导通过单独的途径促进干细胞增殖和分化。最后,在肠道扩张测定法中干细胞的机械激活和在肠道压缩测定法中对直接机械刺激的响应中胞质Ca2 +的增加都需要压电。因此,我们的研究表明果蝇中肠中存在着一组特定的干细胞,它们可以直接通过压电感应机械信号。

著录项

  • 来源
    《Nature》 |2018年第7694期|103-106|共4页
  • 作者单位

    Harvard Med Sch, Dept Genet, Boston, MA 02115 USA;

    Harvard Univ, Dept Phys, Ctr Brain Sci, Cambridge, MA 02142 USA;

    Tongji Univ, Sch Life Sci & Technol, Shanghai 200092, Peoples R China;

    Harvard Univ, Dept Phys, Ctr Brain Sci, Cambridge, MA 02142 USA;

    Harvard Med Sch, Dept Genet, Boston, MA 02115 USA|Howard Hughes Med Inst, Boston, MA 02115 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 02:51:27

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