首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Identification of Genes Mediating Drosophila Follicle Cell Progenitor Differentiation by Screening for Modifiers of GAL4::UAS Variegation
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Identification of Genes Mediating Drosophila Follicle Cell Progenitor Differentiation by Screening for Modifiers of GAL4::UAS Variegation

机译:通过筛选GAL4 :: UAS杂化修饰因子鉴定介导果蝇滤泡细胞祖细胞分化的基因。

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摘要

The Drosophila melanogaster ovarian follicle cell lineage provides a powerful system for investigating how epigenetic changes contribute to differentiation. Downstream from an epithelial stem cell, follicle progenitors undergo nine mitotic cell cycles before transitioning to the endocycle and initiating differentiation. During their proliferative phase, follicle progenitors experience Lsd1-dependent changes in epigenetic stability that can be monitored using GAL4::UAS variegation. Eventually, follicle progenitors acquire competence to respond to Delta, a Notch ligand present in the environment, which signals them to cease division and initiate differentiation. The time required to acquire competence determines the duration of mitotic cycling and hence the final number of follicle cells. We carried out a screen for dominant modifiers of variegation spanning nearly 70% of Drosophila euchromatin to identify new genes influencing follicle progenitor epigenetic maturation. The eight genes found include chromatin modifiers, but also cell cycle regulators and transcription factors. Five of the modifier genes accelerate the acquisition of progenitor competence and reduce follicle cell number, however, the other three genes affect follicle cell number in an unexpected manner.
机译:果蝇果蝇卵巢卵泡细胞谱系提供了一个强大的系统,用于研究表观遗传变化如何促进分化。在上皮干细胞的下游,卵泡祖细胞经历了九个有丝分裂细胞周期,然后才过渡到内皮周期并开始分化。在它们的增殖阶段,卵泡祖细胞经历Lsd1依赖的表观遗传稳定性变化,可以使用GAL4 :: UAS变异进行监测。最终,卵泡祖细胞获得了对Delta(环境中存在的Notch配体)做出反应的能力,这标志着它们停止分裂并开始分化。获得能力所需的时间决定了有丝分裂循环的持续时间,从而决定了卵泡细胞的最终数量。我们进行了筛选的杂种优势修饰因子,覆盖了近70%的果蝇常染色质,以鉴定影响卵泡祖细胞表观遗传成熟的新基因。发现的八个基因包括染色质修饰剂,还包括细胞周期调节剂和转录因子。五个修饰基因加速了祖细胞能力的获得并减少了卵泡细胞的数量,但是,其他三个基因以一种意想不到的方式影响了卵泡细胞的数量。

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