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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Chronic suppression of phosphodiesterase 10A alters striatal expression of genes responsible for neurotransmitter synthesis, neurotransmission, and signaling pathways implicated in Huntington's disease.
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Chronic suppression of phosphodiesterase 10A alters striatal expression of genes responsible for neurotransmitter synthesis, neurotransmission, and signaling pathways implicated in Huntington's disease.

机译:磷酸二酯酶10A的慢性抑制改变了与亨廷顿舞蹈病有关的神经递质合成,神经递质和信号通路的基因的纹状体表达。

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摘要

Inhibition of phosphodiesterase 10A (PDE10A) promotes cyclic nucleotide signaling, increases striatal activation, and decreases behavioral activity. Enhanced cyclic nucleotide signaling is a well established route to producing changes in gene expression. We hypothesized that chronic suppression of PDE10A activity would have significant effects on gene expression in the striatum. A comparison of the expression profile of PDE10A knockout (KO) mice and wild-type mice after chronic PDE10A inhibition revealed altered expression of 19 overlapping genes with few significant changes outside the striatum or after administration of a PDE10A inhibitor to KO animals. Chronic inhibition of PDE10A produced up-regulation of mRNAs encoding genes that included prodynorphin, synaptotagmin10, phosphodiesterase 1C, glutamate decarboxylase 1, and diacylglycerol O-acyltransferase and a down-regulation of mRNAs encoding choline acetyltransferase and Kv1.6, suggesting long-term suppression of the PDE10A enzyme is consistent with altered striatal excitability and potential utility as a antipsychotic therapy. In addition, up-regulation of mRNAs encoding histone 3 (H3) and down-regulation of histone deacetylase 4, follistatin, and claspin mRNAs suggests activation of molecular cascades capable of neuroprotection. We used lentiviral delivery of cAMP response element (CRE)-luciferase reporter constructs into the striatum and live animal imaging of 2-{4-[-pyridin-4-yl-1-(2,2,2-trifluoro-ethyl)-1H-pyrazol-3-yl]-phenoxymethyl}-qui noline succinic acid (TP-10)-induced luciferase activity to further demonstrate PDE10 inhibition results in CRE-mediated transcription. Consistent with potential neuroprotective cascades, we also demonstrate phosphorylation of mitogen- and stress-activated kinase 1 and H3 in vivo after TP-10 treatment. The observed changes in signaling and gene expression are predicted to provide neuroprotective effects in models of Huntington's disease.
机译:磷酸二酯酶10A(PDE10A)的抑制促进环核苷酸信号传导,增加纹状体激活,并降低行为活性。增强的环状核苷酸信号传导是产生基因表达变化的公认途径。我们假设慢性抑制PDE10A活性将对纹状体中的基因表达产生重大影响。慢性PDE10A抑制后,PDE10A基因敲除(KO)小鼠和野生型小鼠的表达谱比较表明,纹状体外部或向KO动物给药后,19个重叠基因的表达发生了变化,纹状体外几乎没有明显变化。长期抑制PDE10A会导致编码基因的mRNA上调,这些基因包括强啡肽,突触突触蛋白10,磷酸二酯酶1C,谷氨酸脱羧酶1和二酰基甘油O-酰基转移酶,而编码胆碱乙酰基转移酶和Kv1.6的mRNA的表达下调,这表明长期抑制了该作用。 PDE10A酶的这种变化与纹状体兴奋性的改变以及作为抗精神病药物的潜在用途相一致。另外,编码组蛋白3(H3)的mRNA的上调和组蛋白脱乙酰基酶4,卵泡抑素和claspin mRNA的下调提示了能够进行神经保护的分子级联反应的激活。我们使用慢病毒将cAMP反应元件(CRE)-萤光素酶报告基因构建体递送至2- {4-[-pyridin-4-yl-1-(2,2,2-三氟-乙基)- 1H-吡唑-3-基]-苯氧基甲基}-喹啉琥珀酸(TP-10)诱导的荧光素酶活性进一步证明在CRE介导的转录中PDE10抑制作用。与潜在的神经保护级联反应一致,我们还证明了在TP-10处理后体内的促分裂原和应激激活激酶1和H3的磷酸化。预计在亨廷顿氏病模型中观察到的信号和基因表达变化将提供神经保护作用。

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