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The nuclear lamina regulates germline stem cell niche organization via modulation of EGFR signaling.

机译:核层通过调节EGFR信号传导来调节种系干细胞的利基组织。

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Stem cell niche interactions have been studied extensively with regard to cell polarity and extracellular signaling. Less is known about the way in which signals and polarity cues integrate with intracellular structures to ensure appropriate niche organization and function. Here, we report that nuclear lamins function in the cyst stem cells (CySCs) of Drosophila testes to control the interaction of CySCs with the hub. This interaction is important for regulation of CySC differentiation and organization of the niche that supports the germline stem cells (GSCs). Lamin promotes nuclear retention of phosphorylated ERK in the CySC lineage by regulating the distribution of?specific nucleoporins within the nuclear pores. Lamin-regulated nuclear epidermal growth factor (EGF) receptor signaling in the CySC lineage is essential for proliferation and differentiation of the GSCs and the transient amplifying germ cells. Thus, we have uncovered a role for the nuclear lamina in the integration of EGF signaling to regulate stem cell niche function.
机译:关于细胞极性和细胞外信号传导,干细胞生态位相互作用已被广泛研究。关于信号和极性提示与细胞内结构整合以确保适当的利基组织和功能的方式知之甚少。在这里,我们报道果蝇睾丸的囊性干细胞(CySCs)中的核纤层蛋白功能来控制CySCs与集线器的相互作用。这种相互作用对于调节CySC分化和支持种系干细胞(GSC)的利基组织非常重要。层蛋白通过调节核孔内特异性核孔蛋白的分布而促进CySC谱系中磷酸化ERK的核保留。 CySC谱系中的Lamin调节核表皮生长因子(EGF)受体信号对于GSC和瞬时扩增生殖细胞的增殖和分化至关重要。因此,我们发现了核层在整合EGF信号以调节干细胞生态位功能中的作用。

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