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首页> 外文期刊>Nature Communications >AWD regulates timed activation of BMP signaling in intestinal stem cells to maintain tissue homeostasis
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AWD regulates timed activation of BMP signaling in intestinal stem cells to maintain tissue homeostasis

机译:AWD调节在肠干细胞中BMP信号传导的定时激活,以维持组织稳态

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Precise control of stem cell (SC) proliferation ensures tissue homeostasis. In the Drosophila intestine, injury-induced regeneration involves initial activation of intestinal SC (ISC) proliferation and subsequent return to quiescence. These two phases of the regenerative response are controlled by differential availability of the BMP type I receptor Thickveins (Tkv), yet how its expression is dynamically regulated remains unclear. Here we show that during homeostasis, the E3 ubiquitin ligase Highwire and the ubiquitin-proteasome system maintain low Tkv protein expression. After ISC activation, Tkv is stabilized by proteasome inhibition and undergoes endocytosis due to the induction of the nucleoside diphosphate kinase Abnormal Wing Disc (AWD). Tkv internalization is required for the activation of the Smad protein Mad, and for the return to quiescence after a regenerative episode. Our data provide insight into the mechanisms ensuring tissue homeostasis by dynamic control of somatic stem cell activity.
机译:干细胞(SC)增殖的精确控制确保组织稳态。在果蝇肠道中,损伤诱导的再生涉及初始激活肠SC(ISC)增殖,随后返回静止。通过BMP I型受体厚度(TKV)的差异可用性来控制再生响应的这两种相,其表达式是如何动态调节的。在这里,我们显示在稳态期间,E3泛素连接酶高温和泛素 - 蛋白酶体系维持低TKV蛋白质表达。在ISC活化之后,由于核苷二磷酸激酶异常翼片(AWD)诱导,TKV通过蛋白酶体抑制而稳定并经历内吞作用。 TKV内化是激活Smad蛋白的疯狂,并且在再生事件后返回静止。我们的数据提供了通过体细胞干细胞活性的动态控制来确保组织稳态的机制的洞察力。

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