Department of Molecular and Developmental Medicine, University of Siena, Siena, Italy.
J Neurochem. 2018 Nov;147(4):439-453. doi: 10.1111/jnc.14558. Epub 2018 Nov 6.
Dopamine- and cAMP-regulated phosphoprotein (M 32 kDa, DARPP-32) is an integrator of multiple neuronal signals and plays a crucial role particularly in mediating the dopaminergic component of the systems involved in the evaluation of stimuli and the ensuing elaboration of complex behavioral responses (e.g., responses to reinforcers and stressors). Dopamine neurons can fire tonically or phasically in distinct timescales and in specific brain regions to code different behaviorally relevant information. Dopamine signaling is mediated mainly through the regulation of adenylyl cyclase activity, stimulated by D1-like or inhibited by D2-like receptors, respectively, that modulates cAMP-dependent protein kinase (PKA) function. The activity of DARPP-32 is finely regulated by its phosphorylation at multiple sites. Phosphorylation at the threonine (Thr) 34 residue by PKA converts DARPP-32 into an inhibitor of protein phosphatase 1, while the phosphorylation at the Thr75 residue turns it into an inhibitor of PKA. Thus, DARPP-32 is critically implicated in regulating striatal output in response to the convergent pathways that influence signaling of the cAMP/PKA pathway. This review summarizes some of the landmark and recent studies of DARPP-32-mediated signaling in the attempt to clarify the role played by DARPP-32 in the response to rewarding natural stimuli. Particularly, the review deals with data derived from rodents studies and discusses the involvement of the cAMP/PKA/DARPP-32 pathway in: 1) appetitive food-sustained motivated behaviors, 2) motivated behaviors sustained by social reward, 3) sexual behavior, and 4) responses to environmental enrichment.
多巴胺和 cAMP 调节磷蛋白(M32kDa,DARPP-32)是多种神经元信号的整合者,尤其在介导参与刺激评估和随后产生复杂行为反应(例如,对强化物和应激源的反应)的系统中的多巴胺能成分方面发挥着关键作用。多巴胺神经元可以在不同的时间尺度和特定的脑区以紧张或相位方式放电,以编码不同的与行为相关的信息。多巴胺信号主要通过 D1 样受体刺激或 D2 样受体抑制分别调节腺苷酸环化酶活性来介导,从而调节 cAMP 依赖性蛋白激酶(PKA)的功能。DARPP-32 的活性通过其在多个位点的磷酸化精细调节。PKA 对 Thr34 残基的磷酸化将 DARPP-32 转化为蛋白磷酸酶 1 的抑制剂,而 Thr75 残基的磷酸化将其转化为 PKA 的抑制剂。因此,DARPP-32 在调节纹状体输出方面起着至关重要的作用,以响应影响 cAMP/PKA 途径信号的会聚途径。本综述总结了一些 DARPP-32 介导的信号转导的里程碑和最新研究,试图阐明 DARPP-32 在对奖赏自然刺激的反应中的作用。特别是,该综述涉及来自啮齿动物研究的数据,并讨论了 cAMP/PKA/DARPP-32 途径在以下方面的作用:1)与食物相关的奖赏性动机行为,2)由社会奖赏维持的动机行为,3)性行为,以及 4)对环境丰富的反应。