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首页> 外文期刊>Biochemistry >Phosphorylation of RGS14 by Protein Kinase A Potentiates Its Activity toward Galphai.
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Phosphorylation of RGS14 by Protein Kinase A Potentiates Its Activity toward Galphai.

机译:RGS14的蛋白激酶A磷酸化增强了其对Galphai的活性。

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Regulators of G protein signaling (RGS proteins) modulate Galpha-directed signals because of the GTPase activating protein (GAP) activity of their conserved RGS domain. RGS14 and RGS12 are unique among RGS proteins in that they also regulate Galpha(i) signals because of the guanine nucleotide dissociation inhibitor (GDI) activity of a GoLoco motif near their carboxy-termini. Little is known about cellular regulation of RGS proteins, although several are phosphorylated in response to G-protein directed signals. Here we show for the first time the phosphorylation of native and recombinant RGS14 in host cells. Direct stimulation of adenylyl cyclase or introduction of dibutyryl-cAMP induces phosphorylation of RGS14 in cells. This phosphorylation occurs through activation of cAMP-dependent protein kinase (PKA) since phosphate incorporation is completely blocked by a selective inhibitor of PKA but only partially or not at all blocked by inhibitors of other G-protein regulated kinases. We show that purified PKA phosphorylates two specific sites on recombinant RGS14, one of which, threonine 494 (Thr494), is immediately adjacent to the GoLoco motif. Because of this proximity, we focused on the possible effects of PKA phosphorylation on the GDI activity of RGS14. We found that mimicking phosphorylation on Thr494 enhanced the GDI activity of RGS14 toward Galpha(i) nearly 3-fold, with no associated effect on the GAP activity toward either Galpha(i) or Galpha(o). These findings implicate cAMP-induced phosphorylation as an important modulator of RGS14 function since phosphorylation could enhance RGS14 binding to Galpha(i)-GDP, thereby limiting Galpha(i) interactions with downstream effector(s) and/or enhancing Gbetagamma-dependent signals.
机译:G蛋白信号的调节剂(RGS蛋白)由于其保守的RGS域的GTPase激活蛋白(GAP)活性而调节Galpha定向信号。 RGS14和RGS12在RGS蛋白中是独特的,因为它们的羧基末端附近具有GoLoco基序的鸟嘌呤核苷酸解离抑制剂(GDI)活性,因此它们也调节Galpha(i)信号。关于RGS蛋白质的细胞调节知之甚少,尽管其中有几种会响应于G蛋白定向信号而被磷酸化。在这里,我们首次显示了宿主细胞中天然和重组RGS14的磷酸化。直接刺激腺苷酸环化酶或引入二丁酰-cAMP诱导细胞中RGS14的磷酸化。这种磷酸化是通过激活cAMP依赖性蛋白激酶(PKA)来实现的,因为磷酸盐的掺入完全被PKA的选择性抑制剂所阻断,而被其他G蛋白调节的激酶的抑制剂所部分或完全阻断。我们显示纯化的PKA磷酸化重组RGS14上的两个特定位点,其中之一,苏氨酸494(Thr494),紧邻GoLoco主题。由于这种接近,我们集中研究了PKA磷酸化对RGS14的GDI活性的可能影响。我们发现模仿在Thr494上的磷酸化增强了RGS14对Galpha(i)的GDI活性近3倍,而对GAP对Galpha(i)或Galpha(o)的活性没有相关影响。这些发现暗示cAMP诱导的磷酸化是RGS14功能的重要调节剂,因为磷酸化可以增强RGS14与Galpha(i)-GDP的结合,从而限制Galpha(i)与下游效应物的相互作用和/或增强Gbetagamma依赖性信号。

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