首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Glutamate Counteracts Dopamine/PKA Signaling via Dephosphorylation of DARPP-32 Ser-97 and Alteration of Its Cytonuclear Distribution
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Glutamate Counteracts Dopamine/PKA Signaling via Dephosphorylation of DARPP-32 Ser-97 and Alteration of Its Cytonuclear Distribution

机译:谷氨酸通过DARPP-32 Ser-97的去磷酸化和改变其细胞核分布来抵消多巴胺/ PKA信号。

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摘要

The interaction of glutamate and dopamine in the striatum is heavily dependent on signaling pathways that converge on the regulatory protein DARPP-32. The efficacy of dopamine/D1 receptor/PKA signaling is regulated by DARPP-32 phosphorylated at Thr-34 (the PKA site), a process that inhibits protein phosphatase 1 (PP1) and potentiates PKA action. Activation of dopamine/D1 receptor/PKA signaling also leads to dephosphorylation of DARPP-32 at Ser-97 (the CK2 site), leading to localization of phospho-Thr-34 DARPP-32 in the nucleus where it also inhibits PP1. In this study the role of glutamate in the regulation of DARPP-32 phosphorylation at four major sites was further investigated. Experiments using striatal slices revealed that glutamate decreased the phosphorylation states of DARPP-32 at Ser-97 as well as Thr-34, Thr-75, and Ser-130 by activating NMDA or AMPA receptors in both direct and indirect pathway striatal neurons. The effect of glutamate in decreasing Ser-97 phosphorylation was mediated by activation of PP2A. In vitro phosphatase assays indicated that the PP2A/PR72 heterotrimer complex was likely responsible for glutamate/Ca2+-regulated dephosphorylation of DARPP-32 at Ser-97. As a consequence of Ser-97 dephosphorylation, glutamate induced the nuclear localization in cultured striatal neurons of dephospho-Thr-34/dephospho-Ser-97 DARPP-32. It also reduced PKA-dependent DARPP-32 signaling in slices and in vivo. Taken together, the results suggest that by inducing dephosphorylation of DARPP-32 at Ser-97 and altering its cytonuclear distribution, glutamate may counteract dopamine/D1 receptor/PKA signaling at multiple cellular levels.
机译:纹状体中谷氨酸和多巴胺的相互作用在很大程度上取决于在调节蛋白DARPP-32上收敛的信号通路。多巴胺/ D1受体/ PKA信号传导的功效受Thr-34(PKA位点)磷酸化的DARPP-32调控,该过程可抑制蛋白磷酸酶1(PP1)并增强PKA的作用。多巴胺/ D1受体/ PKA信号的激活还导致DARPP-32在Ser-97(CK2位点)上的去磷酸化,导致磷酸化Thr-34 DARPP-32在细胞核中定位,并在那里抑制PP1。在这项研究中,进一步研究了谷氨酸在调节四个主要部位的DARPP-32磷酸化中的作用。使用纹状体切片的实验显示,谷氨酸通过激活直接和间接途径纹状体神经元中的NMDA或AMPA受体,降低了SerPP 97以及thr-34,Thr-75和Ser-130上DARPP-32的磷酸化状态。谷氨酸降低Ser-97磷酸化的作用是通过激活PP2A介导的。体外磷酸酶检测结果表明,PP2A / PR72异源三聚体复合物可能是导致Ser-97处谷氨酸/ Ca 2 + 调控的DARPP-32脱磷酸的原因。由于Ser-97的去磷酸化作用,谷氨酸诱导了Dephospho-Thr-34 / dephospho-Ser-97 DARPP-32的纹状体神经元的核定位。它还减少了切片和体内PKA依赖性的DARPP-32信号传导。两者合计,结果表明,通过在Ser-97诱导DARPP-32的去磷酸化并改变其细胞核分布,谷氨酸可以在多个细胞水平上抵消多巴胺/ D1受体/ PKA信号传导。

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