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首页> 外文期刊>Nature Communications >Quantitative microscopy of the Drosophila ovary shows multiple niche signals specify progenitor cell fate
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Quantitative microscopy of the Drosophila ovary shows multiple niche signals specify progenitor cell fate

机译:果蝇卵巢的定量显微镜显示多个利基信号指定祖细胞的命运

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摘要

Adult stem cells commonly give rise to transit-amplifying progenitors, whose progeny differentiate into distinct cell types. It is unclear if stem cell niche signals coordinate fate decisions within the progenitor pool. Here we use quantitative analysis of Wnt, Hh, and Notch signalling reporters and the cell fate markers Eyes Absent (Eya) and Castor (Cas) to study the effects of hyper-activation and loss of niche signals on progenitor development in the Drosophila ovary. Follicle stem cell (FSC) progeny adopt distinct polar, stalk, and main body cell fates. We show that Wnt signalling transiently inhibits expression of the main body cell fate determinant Eya, and Wnt hyperactivity strongly biases cells towards polar and stalk fates. Hh signalling independently controls the proliferation to differentiation transition. Notch is permissive but not instructive for differentiation of multiple cell types. These findings reveal that multiple niche signals coordinate cell fates and differentiation of progenitor cells.
机译:成体干细胞通常会产生转运扩增祖细胞,其后代分化成不同的细胞类型。目前尚不清楚干细胞小生境信号是否协调祖细胞内的命运决定。在这里,我们使用Wnt,Hh和Notch信号报告基因和细胞命运标志物Eyes Absent(Eya)和Castor(Cas)的定量分析来研究果蝇卵巢中祖细胞发育的过度激活和小生境信号的损失。卵泡干细胞(FSC)后代采用不同的极性,柄和主体细胞命运。我们表明,Wnt信号短暂地抑制了主体细胞命运决定因素Eya的表达,并且Wnt过度活跃强烈地将细胞偏向极地和秸秆的命运。 Hh信号独立控制增殖到分化的转变。 Notch对多种细胞类型的分化是允许的,但没有指导意义。这些发现表明,多个利基信号协调细胞命运和祖细胞的分化。

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