Ahn Jung-Hyuck, Sung Jee Young, McAvoy Thomas, Nishi Akinori, Janssens Veerle, Goris Jozef, Greengard Paul, Nairn Angus C
Laboratory of Molecular and Cellular Neuroscience, The Rockefeller University, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 2007 Jun 5;104(23):9876-81. doi: 10.1073/pnas.0703589104. Epub 2007 May 29.
In dopaminoceptive neurons, dopamine- and cAMP-regulated phosphoprotein of 32 kDa (DARPP-32) plays a central role in integrating the effects of dopamine and other neurotransmitters. Phosphorylation of DARPP-32 at Thr-34 by protein kinase A results in inhibition of protein phosphatase 1 (PP1), and phosphorylation at Thr-75 by Cdk5 (cyclin-dependent kinase 5) results in inhibition of protein kinase A. Dephosphorylation at Thr-34 involves primarily the Ca(2+)-dependent protein phosphatase, PP2B (calcineurin), whereas dephosphorylation of Thr-75 involves primarily PP2A, the latter being subject to control by both cAMP- and Ca(2+)-dependent regulatory mechanisms. In the present study, we have investigated the mechanism of Ca(2+)-dependent regulation of Thr-75 by PP2A. We show that the PR72 (or B'' or PPP2R3A) regulatory subunit of PP2A is highly expressed in striatum. Through the use of overexpression and down-regulation by using RNAi, we show that PP2A, in a heterotrimeric complex with the PR72 subunit, mediates Ca(2+)-dependent dephosphorylation at Thr-75 of DARPP-32. The PR72 subunit contains two Ca(2+) binding sites formed by E and F helices (EF-hands 1 and 2), and we show that the former is necessary for the ability of PP2A activity to be regulated by Ca(2+), both in vitro and in vivo. Our studies also indicate that the PR72-containing form of PP2A is necessary for the ability of glutamate acting at alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid and NMDA receptors to regulate Thr-75 dephosphorylation. These studies further our understanding of the complex signal transduction pathways that regulate DARPP-32. In addition, our studies reveal an alternative intracellular mechanism whereby Ca(2+) can activate serine/threonine phosphatase activity.
在多巴胺感受神经元中,32 kDa的多巴胺和cAMP调节磷蛋白(DARPP - 32)在整合多巴胺和其他神经递质的作用方面发挥着核心作用。蛋白激酶A使DARPP - 32的苏氨酸34位点磷酸化会导致蛋白磷酸酶1(PP1)受到抑制,而细胞周期蛋白依赖性激酶5(Cdk5)使苏氨酸75位点磷酸化会导致蛋白激酶A受到抑制。苏氨酸34位点的去磷酸化主要涉及钙依赖性蛋白磷酸酶PP2B(钙调神经磷酸酶),而苏氨酸75位点的去磷酸化主要涉及PP2A,后者受到cAMP和钙依赖性调节机制的控制。在本研究中,我们探究了PP2A对苏氨酸75位点进行钙依赖性调节的机制。我们发现PP2A的PR72(或B''或PPP2R3A)调节亚基在纹状体中高度表达。通过使用RNA干扰进行过表达和下调,我们发现与PR72亚基形成异源三聚体复合物的PP2A介导了DARPP - 32苏氨酸75位点的钙依赖性去磷酸化。PR72亚基包含由E和F螺旋形成的两个钙结合位点(EF手型结构1和2),并且我们发现前者对于体外和体内PP2A活性受钙调节的能力是必需的。我们的研究还表明,含PR72的PP2A形式对于谷氨酸作用于α - 氨基 - 3 - 羟基 - 5 - 甲基异恶唑 - 4 - 丙酸和NMDA受体调节苏氨酸75位点去磷酸化的能力是必需的。这些研究加深了我们对调节DARPP - 32的复杂信号转导途径的理解。此外,我们的研究揭示了一种钙可以激活丝氨酸/苏氨酸磷酸酶活性的细胞内替代机制。