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Dual role of BMP signaling in the regulation of Drosophila intestinal stem cell self-renewal

机译:BMP信号在果蝇肠道干细胞调节中的双重作用自我更新

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摘要

Many adult organs including Drosophila adult midguts rely on resident stem cells to replenish damaged cells during tissue homeostasis and regeneration. Previous studies have shown that, upon injury, intestinal stem cells (ISCs) in the midguts can increase proliferation and lineage differentiation to meet the demand for tissue repair. Our recent study has demonstrated that, in response to certain injury, midguts can expand ISC population size as an additional regenerative mechanism. We found that injury elicited by bleomycin feeding or bacterial infection increased the production of two BMP ligands (Dpp and Gbb) in enterocytes (ECs), leading to elevated BMP signaling in progenitor cells that drove an expansion of ISCs by promoting their symmetric self-renewing division. Interestingly, we also found that BMP signaling in ECs inhibits the production of Dpp and Gbb, and that this negative feedback mechanism is required to reset ISC pool size to the homeostatic state. Our findings suggest that BMP signaling exerts two opposing influences on stem cell activity depending on where it acts: BMP signaling in progenitor cells promotes ISC self-renewal while BMP signaling in ECs restricts ISC self-renewal by preventing excessive production of BMP ligands. Our results further suggest that transient expansion of ISC population in conjunction with increasing ISC proliferation provides a more effective strategy for tissue regeneration.
机译:许多成年器官包括果蝇成人中肠依赖于驻留干细胞在组织稳态和再生期间补充受损细胞。以前的研究表明,在损伤后,中肠中的肠干细胞(ISC)可以增加增殖和谱系分化,以满足组织修复的需求。我们最近的一项研究表明,为了应对一定伤害,中肠可以将ISC人口规模扩大为额外的再生机制。我们发现通过渗透素喂养或细菌感染引发的损伤增加了肠细胞(ECS)中的两种BMP配体(DPP和GBB)的产生,导致祖细胞中的BMP信号传导,通过促进其对称的自我更新,推动ISC的扩展分配。有趣的是,ECS中的BMP信令抑制了DPP和GBB的生产,并且该负反馈机制需要将ISC池大小重置为稳态状态。我们的研究结果表明,根据其作用的位置:祖细胞中的BMP信号传导促进ISC自我更新的BMP信号,而ECS中的BMP信号通过防止BMP配体的过度生产限制ISC自我更新的ISC自我更新的影响。我们的结果表明,ISC人群的瞬态扩张与ISC增殖的增加提供了更有效的组织再生策略。

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