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Drosophila GoLoco-Protein Pins Is a Target of Gαo-mediated G Protein–coupled Receptor Signaling

机译:果蝇GoLoco蛋白引脚是Gαo介导的G蛋白偶联受体信号转导的目标。

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G protein–coupled receptors (GPCRs) transduce their signals through trimeric G proteins, inducing guanine nucleotide exchange on their Gα-subunits; the resulting Gα-GTP transmits the signal further inside the cell. GoLoco domains present in many proteins play important roles in multiple trimeric G protein–dependent activities, physically binding Gα-subunits of the Gαi/o class. In most cases GoLoco binds exclusively to the GDP-loaded form of the Gα-subunits. Here we demonstrate that the poly-GoLoco–containing protein Pins of Drosophila can bind to both GDP- and GTP-forms of Drosophila Gαo. We identify Pins GoLoco domain 1 as necessary and sufficient for this unusual interaction with Gαo-GTP. We further pinpoint a lysine residue located centrally in this domain as necessary for the interaction. Our studies thus identify Drosophila Pins as a target of Gαo-mediated GPCR receptor signaling, e.g., in the context of the nervous system development, where Gαo acts downstream from Frizzled and redundantly with Gαi to control the asymmetry of cell divisions.
机译:G蛋白偶联受体(GPCR)通过三聚体G蛋白转导信号,诱导其Gα亚基上的鸟嘌呤核苷酸交换。所得的Gα-GTP将信号传输到更深的细胞内部。存在于许多蛋白质中的GoLoco结构域在多种三聚体G蛋白依赖性活动中发挥重要作用,它们与Gα i / o 类的Gα亚基物理结合。在大多数情况下,GoLoco只能绑定到GDP形式的Gα亚基。在这里,我们证明了果蝇的含有多GoLoco的蛋白Pins可以与果蝇Gα o 的GDP和GTP形式结合。我们确定Pins GoLoco域1是与Gα o -GTP进行这种异常相互作用的必要条件和充分条件。我们进一步确定了相互作用所需的赖氨酸残基位于该结构域的中央。因此,我们的研究确定了果蝇Pins是Gα o 介导的GPCR受体信号转导的靶标,例如在神经系统发育的背景下,其中Gα o 作用于卷曲的下游并与Gα i 冗余地控制细胞分裂的不对称性。

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