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G protein-coupled receptors control the sensitivity of cells to the morphogen Sonic Hedgehog

机译:G蛋白偶联的受体控制细胞对形态学发电机的敏感性

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The morphogen Sonic Hedgehog (SHH) patterns tissues during development by directing cell fates in a concentration-dependent manner. The SHH signal is transmitted across the membrane of target cells by the heptahelical transmembrane protein Smoothened (SMO), which activates the GLI family of transcription factors through a mechanism that is undefined in vertebrates. Using CRISPR-edited null alleles and small-molecule inhibitors, we systematically analyzed the epistatic interactions between SMO and three proteins implicated in SMO signaling: the heterotrimeric G protein subunit G alpha(S), the G protein-coupled receptor kinase 2 (GRK2), and the G alpha(S)-coupled receptor GPR161. Our experiments uncovered a signaling mechanism that modifies the sensitivity of target cells to SHH and consequently changes the shape of the SHH dose-response curve. In both fibroblasts and spinal neural progenitors, the loss of GPR161, previously implicated as an inhibitor of basal SHH signaling, increased the sensitivity of target cells across the entire spectrum of SHH concentrations. Even in cells lacking GPR161, GRK2 was required for SHH signaling, and G alpha(s), which promotes the activation of protein Kinase A (PKA), antagonized SHH signaling. We propose that the sensitivity of target cells to Hedgehog morphogens, and the consequent effects on gene expression and differentiation outcomes, can be controlled by signals from G protein-coupled receptors that converge on G alpha(s) and PKA.
机译:通过以浓度依赖性方式引导细胞序列在开发过程中的形态学术(SHH)模式。 SHH信号通过胚胎跨膜蛋白如晶状体(SMO)透过靶细胞的膜,通过脊椎动物未定义的机制激活GLI系列转录因子。使用CRISPR编辑的零等位基因和小分子抑制剂,我们系统地分析了SMO与三种蛋白质之间的伪生相互作用,其三种蛋白质在SMO信号传导中:异映酰基蛋白亚基Gα(S),G蛋白偶联受体激酶2(GRK2) ,和Gα-耦合受体GPR161。我们的实验发现了一种传导机构,其改变靶细胞对SHH的敏感性,从而改变了SHH剂量响应曲线的形状。在成纤维细胞和脊柱神经祖细胞中,预先涉及基础SHH信号传导的抑制剂的GPR161的丧失增加了靶细胞对整个SHH浓度的敏感性。即使在缺乏GPR161的细胞中,SHH信号传导需要GRK2,Gα(S)需要促进蛋白激酶A(PKA)的激活,拮抗的SHH信号传导。我们提出靶细胞对刺猬的敏感性和对基因表达和分化结果的影响,可以通过来自Gα(S)和PKA的G蛋白偶联受体的信号来控制。

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