首页> 外文期刊>Journal of Neuroscience Research >Rhes and AGS1/Dexras1 affect signaling by dopamine D1 receptors through adenylyl cyclase.
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Rhes and AGS1/Dexras1 affect signaling by dopamine D1 receptors through adenylyl cyclase.

机译:Rhes和AGS1 / Dexras1通过多巴胺D1受体通过腺苷酸环化酶影响信号传导。

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摘要

The GTP binding proteins Rhes and AGS1/Dexras1 define a subfamily of the Ras superfamily and have been shown to affect signaling by G-protein-coupled receptors. We tested the effects of both proteins at an early stage of signaling by dopamine receptors, activation of adenylyl cyclase. Rhes decreased dopamine D1 receptor agonist-stimulated cAMP accumulation in a pertussis toxin-sensitive manner. It had no effect on cAMP accumulation in the absence of agonist. AGS1/Dexras1, on the other hand, decreased cAMP accumulation in both vehicle-treated and agonist-treated cells, resulting in a higher percentage of stimulation by agonist or a higher signal-to-noise ratio. The effects of AGS1/Dexras1 on cAMP accumulation were not blocked by pertussis toxin, suggesting that it may produce these effects through interaction with a G(alpha) i monomer. Both Rhes and AGS1/Dexras1 were associated with GTP-bound G(alpha) i in pull-down assays. However, Rhes had no effect on the ability of activated D2 receptor to inhibit cAMP. Neither Rhes nor AGS1/Dexras1 interacted with the D1 receptor in pull-down assays. These findings show that, in addition to its well-known effects on signaling through Gi-coupled receptors, AGS1/Dexras1 can affect signaling through a Gs/olf-coupled receptor. Furthermore, the results suggest that Rhes exerts some of its effects by interacting with G(alpha) i.
机译:GTP结合蛋白Rhes和AGS1 / Dexras1定义了Ras超家族的一个亚家族,并已显示可通过G蛋白偶联受体影响信号传导。我们在多巴胺受体的信号传递,腺苷酸环化酶激活的早期阶段测试了这两种蛋白质的作用。 Rhes以对百日咳毒素敏感的方式降低了多巴胺D1受体激动剂刺激的cAMP积累。在没有激动剂的情况下,它对cAMP的积累没有影响。另一方面,AGS1 / Dexras1减少了媒介物处理和激动剂处理细胞中的cAMP积累,从而导致激动剂刺激的百分比更高或信噪比更高。百日咳毒素未阻断AGS1 / Dexras1对cAMP积累的作用,表明它可能通过与Gαi单体相互作用而产生这些作用。在下拉试验中,Rhes和AGS1 / Dexras1均与GTP结合的Gα关联。但是,Rhes对活化的D2受体抑制cAMP的能力没有影响。在下拉测定中,Rhes和AGS1 / Dexras1均未与D1受体相互作用。这些发现表明,AGS1 / Dexras1除了通过Gi偶联受体对信号传导的众所周知的作用外,还可以影响通过Gs / olf偶联受体的信号传导。此外,结果表明,Rhes通过与Gαi相互作用而发挥其某些作用。

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