首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >D2 dopamine receptor activation of potassium channels is selectively decoupled by Galpha-specific GoLoco motif peptides.
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D2 dopamine receptor activation of potassium channels is selectively decoupled by Galpha-specific GoLoco motif peptides.

机译:钾通道的D2多巴胺受体激活被Galpha特异性GoLoco基序肽选择性地解偶联。

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摘要

The GoLoco motif is a short polypeptide sequence found in G-protein signaling regulators such as regulator of G-protein signaling proteins type 12 and 14 and activator of G-protein signaling protein type 3. A unique property of the GoLoco motifs from these three proteins is their preferential interaction with guanosine diphosphate (GDP)-bound Galpha(i1), Galpha(i3) and, sometimes, Galpha(i2) subunits over Galpha(o) subunits. This interaction prevents both spontaneous guanine nucleotide release and reassociation of Galpha(i)-GDP with Gbetagamma. We utilized this property of the GoLoco motif to examine dopamine (D2 and D3) and somatostatin receptor coupling to G-protein-regulated inwardly rectifying potassium (GIRK) channels in mouse AtT20 cells. GoLoco motif peptides had no effect on either basal channel activity or the initial responses to agonists, suggesting that the GoLoco motif cannot disrupt pre-formed G-protein heterotrimers. GoLoco motif peptides did, however, interfere with human D2((short)) receptor coupling to GIRK channels as demonstrated by the progressively diminished responses after repeated agonist application. This behavior is consistent with some form of compartmentalization of D2 receptors and GIRK channels such that Gbetagamma subunits, freed by local receptor activation and prevented from reforming a heterotrimeric complex, are not functionally constrained within the receptor-channel complex and thus are unable to exert a persistent activating effect. In contrast, GoLoco motif peptides had no effect on either D3 or somatostatin coupling to GIRK channels. Our results suggest that GoLoco motif-based peptides will be useful tools in examining the specificity of G-protein-coupled receptor-effector coupling.
机译:GoLoco基序是在G蛋白信号调节剂(例如12型和14型G蛋白信号蛋白的调节剂和3型G蛋白信号蛋白的激活剂)中发现的短多肽序列。这三个蛋白的GoLoco基序的独特特性是它们与鸟嘌呤二磷酸(GDP)结合的Galpha(i1),Galpha(i3)以及有时与Galpha(o)亚基相比的优先相互作用。这种相互作用既防止了自发的鸟嘌呤核苷酸释放,也阻止了Galpha(i)-GDP与Gbetagamma的重新关联。我们利用GoLoco母题的此属性来检查多巴胺(D2和D3)和生长抑素受体与小鼠AtT20细胞中G蛋白调节的内向整流钾(GIRK)通道的偶联。 GoLoco基序肽对基础通道活性或对激动剂的初始反应均无影响,这表明GoLoco基序不能破坏预先形成的G蛋白异源三聚体。然而,GoLoco基序肽确实干扰了人D2((short))受体与GIRK通道的偶联,这是通过反复激动剂施用后反应逐渐减弱所证明的。这种行为与D2受体和GIRK通道的某种分隔形式相一致,从而使Gbetagamma亚基通过局部受体激活而释放,并阻止了异源三聚体的重整,在功能上不受受体通道复合物的限制,因此无法发挥作用。持续的激活作用。相反,GoLoco基序肽对D3或生长抑素耦合至GIRK通道均无影响。我们的结果表明,基于GoLoco基序的肽将是检查G蛋白偶联受体-效应子偶联特异性的有用工具。

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