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Specification and behavior of AMPs, muscle-committed transient Drosophila stem cells

机译:AMP,肌肉定型的果蝇干细胞的规格和行为

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During development, transient stem cells play critical roles in the formation of specific tissues. Adult Muscle Precursors (AMPs) are at the origin of all adult Drosophila muscles and as we report here represent a novel population of muscle-committed transient stem cells. Similar to vertebrate muscle stem cells, AMPs keep Notch signaling active and express Enhancer of split m6 (E(spl) m6) gene, a read-out of Notch pathway. To get insights into AMP cell specification we performed a gain-of-function screen and found that the rhomboid-triggered Epidermal Growth Factor (EGF) signaling pathway controls both the specification and the subsequent maintenance of AMPs. Our findings are supported by the identification of EGF-secreting cells in the lateral domain and the EGF-dependent regulatory modules that drive expression of the ladybird gene in lateral AMPs. Interestingly, by targeting GFP to the AMP cell membranes we also demonstrated that AMPs send long cellular processes and form a network of interconnected cells. As revealed by laser ablation experiments, the main role of AMP cell connections is to maintain their correct spatial positioning.
机译:在发育过程中,瞬时干细胞在特定组织的形成中起关键作用。成年肌肉前体(AMP)是所有果蝇成年肌肉的起源,正如我们在此报告的那样,它代表了一种新的肌肉定型瞬时干细胞群体。类似于脊椎动物的肌肉干细胞,AMP使Notch信号保持活跃,并表达Notch通路的读出的m6分裂增强基因(E(spl)m6)。为了深入了解AMP细胞的规格,我们进行了功能增益筛选,发现菱形触发的表皮生长因子(EGF)信号通路既控制AMP的规格,又控制其后续维护。我们的发现得到了横向域中EGF分泌细胞的鉴定和驱动瓢虫基因在横向AMP中表达的EGF依赖性调节模块的支持。有趣的是,通过将GFP靶向AMP细胞膜,我们还证明了AMPs可以发送较长的细胞过程并形成相互连接的细胞网络。如激光烧蚀实验所揭示的,AMP细胞连接的主要作用是维持其正确的空间定位。

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