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GCL and CUL3 Control the Switch between Cell Lineages by Mediating Localized Degradation of an RTK

机译:GCL和CUL3通过调解RTK的局部劣化来控制细胞谱系之间的开关

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The separation of germline from somatic lineages is fundamental to reproduction and species preservation. Here, we show that Drosophila Germ cell-less (GCL) is a critical component in this process by acting as a switch that turns off a somatic lineage pathway. GCL, a conserved BTB (Broad-complex, Tramtrack, and Bric-a-brac) protein, is a substrate-specific adaptor for Cullin3-RING ubiquitin ligase complex (CRL3(GCL)). We show that CRL3(GCL) promotes PGC fate by mediating degradation of Torso, a receptor tyrosine kinase (RTK) and major determinant of somatic cell fate. This mode of RTK degradation does not depend upon receptor activation but is prompted by release of GCL from the nuclear envelope during mitosis. The cell-cycle-dependent change in GCL localization provides spatiotemporal specificity for RTK degradation and sequesters CRL3(GCL) to prevent it from participating in excessive activities. This precisely orchestrated mechanism of CRL3(GCL) function and regulation defines cell fate at the single-cell level.
机译:从躯体谱系中的种系分离是生殖和物种保存的基础。在这里,我们表明果蝇胚芽细胞(GCL)是该过程中的关键部件,通过作为关闭躯体谱系途径的开关。 GCL是一种保守的BTB(广泛的复杂,轨道和Bric-A-BRAC)蛋白是Cullin3环泛素连接酶复合物(CRL3(GCl))的底物特异性衔接子。我们表明CRL3(GCL)通过介导躯干的降解,受体酪氨酸激酶(RTK)和体细胞命运的主要决定蛋白来促进PGC命运。这种RTK劣化模式不依赖于受体激活,而是通过在有丝分裂期间从核包封释放GCL来提示。 GCL定位的细胞周期依赖性变化为RTK降解和搅拌CRL3(GCL)的速度特异性为防止其参与过多的活动。 CRL3(GCL)函数和调节的这种精确策划机制定义了单个细胞级别的单元格命运。

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