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多巴胺和3',5'-环磷腺苷调节的磷酸蛋白-32(DARPP-32)是多巴胺和谷氨酸信号的强大整合器。

DARPP-32 is a robust integrator of dopamine and glutamate signals.

作者信息

Fernandez Eric, Schiappa Renaud, Girault Jean-Antoine, Le Novère Nicolas

机构信息

EMBL-EBI, Wellcome-Trust Genome Campus, Hinxton, United Kingdom.

出版信息

PLoS Comput Biol. 2006 Dec 22;2(12):e176. doi: 10.1371/journal.pcbi.0020176. Epub 2006 Nov 6.

Abstract

Integration of neurotransmitter and neuromodulator signals in the striatum plays a central role in the functions and dysfunctions of the basal ganglia. DARPP-32 is a key actor of this integration in the GABAergic medium-size spiny neurons, in particular in response to dopamine and glutamate. When phosphorylated by cAMP-dependent protein kinase (PKA), DARPP-32 inhibits protein phosphatase-1 (PP1), whereas when phosphorylated by cyclin-dependent kinase 5 (CDK5) it inhibits PKA. DARPP-32 is also regulated by casein kinases and by several protein phosphatases. These complex and intricate regulations make simple predictions of DARPP-32 dynamic behaviour virtually impossible. We used detailed quantitative modelling of the regulation of DARPP-32 phosphorylation to improve our understanding of its function. The models included all the combinations of the three best-characterized phosphorylation sites of DARPP-32, their regulation by kinases and phosphatases, and the regulation of those enzymes by cAMP and Ca(2+) signals. Dynamic simulations allowed us to observe the temporal relationships between cAMP and Ca(2+) signals. We confirmed that the proposed regulation of protein phosphatase-2A (PP2A) by calcium can account for the observed decrease of Threonine 75 phosphorylation upon glutamate receptor activation. DARPP-32 is not simply a switch between PP1-inhibiting and PKA-inhibiting states. Sensitivity analysis showed that CDK5 activity is a major regulator of the response, as previously suggested. Conversely, the strength of the regulation of PP2A by PKA or by calcium had little effect on the PP1-inhibiting function of DARPP-32 in these conditions. The simulations showed that DARPP-32 is not only a robust signal integrator, but that its response also depends on the delay between cAMP and calcium signals affecting the response to the latter. This integration did not depend on the concentration of DARPP-32, while the absolute effect on PP1 varied linearly. In silico mutants showed that Ser137 phosphorylation affects the influence of the delay between dopamine and glutamate, and that constitutive phosphorylation in Ser137 transforms DARPP-32 in a quasi-irreversible switch. This work is a first attempt to better understand the complex interactions between cAMP and Ca(2+) regulation of DARPP-32. Progressive inclusion of additional components should lead to a realistic model of signalling networks underlying the function of striatal neurons.

摘要

神经递质和神经调质信号在纹状体中的整合在基底神经节的功能及功能障碍中起着核心作用。DARPP - 32是γ-氨基丁酸能中等多棘神经元中这种整合的关键因子,尤其是对多巴胺和谷氨酸的反应。当被环磷酸腺苷依赖性蛋白激酶(PKA)磷酸化时,DARPP - 32抑制蛋白磷酸酶 - 1(PP1),而当被细胞周期蛋白依赖性激酶5(CDK5)磷酸化时,它抑制PKA。DARPP - 32也受酪蛋白激酶和几种蛋白磷酸酶的调节。这些复杂且精细的调节使得几乎不可能对DARPP - 32的动态行为做出简单预测。我们使用对DARPP - 32磷酸化调节的详细定量建模来增进对其功能的理解。这些模型包括DARPP - 32三个特征最明显的磷酸化位点的所有组合、它们受激酶和磷酸酶的调节以及这些酶受环磷酸腺苷和钙离子信号的调节。动态模拟使我们能够观察环磷酸腺苷和钙离子信号之间的时间关系。我们证实了所提出的钙离子对蛋白磷酸酶 - 2A(PP2A)的调节可以解释谷氨酸受体激活后苏氨酸75磷酸化的观察到的降低。DARPP - 32并非简单地在抑制PP1状态和抑制PKA状态之间切换。敏感性分析表明,如先前所提示的,CDK5活性是反应的主要调节因子。相反,在这些条件下,PKA或钙离子对PP2A的调节强度对DARPP - 32抑制PP1的功能影响很小。模拟表明,DARPP - 32不仅是一个强大的信号整合器,而且其反应还取决于影响对后者反应的环磷酸腺苷和钙离子信号之间的延迟。这种整合不依赖于DARPP - 32的浓度,而对PP1的绝对影响呈线性变化。计算机模拟突变体表明,丝氨酸137磷酸化影响多巴胺和谷氨酸之间延迟的影响,并且丝氨酸137的组成型磷酸化将DARPP - 32转变为准不可逆开关。这项工作是首次尝试更好地理解环磷酸腺苷和钙离子对DARPP - 32调节之间的复杂相互作用。逐步纳入其他成分应能导致一个反映纹状体神经元功能基础的信号网络的现实模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/979a/1764052/300b04fbc928/pcbi.0020176.g001.jpg

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