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神经降压素对新纹状体神经元中DARPP - 32苏氨酸75磷酸化的调节:谷氨酸信号传导的参与

Regulation of DARPP-32 Thr75 phosphorylation by neurotensin in neostriatal neurons: involvement of glutamate signalling.

作者信息

Matsuyama Seiichiro, Fukui Ryuichi, Higashi Hideho, Nishi Akinori

机构信息

Department of Physiology, Kurume University School of Medicine, 67 Asahi-machi, Kurume, Fukuoka 830-0011, Japan.

出版信息

Eur J Neurosci. 2003 Sep;18(5):1247-53. doi: 10.1046/j.1460-9568.2003.02859.x.

Abstract

Neurotensin is a neuropeptide involved in dopaminergic signalling. We have recently reported that neurotensin stimulates the phosphorylation of DARPP-32 (dopamine- and cAMP-regulated phosphoprotein of Mr 32 kDa) at Thr34 (PKA-site) by activating dopamine D1-type receptors in neostriatal neurons. DARPP-32 is also phosphorylated by cyclin-dependent kinase 5 on Thr75, and the phosphorylated form of DARPP-32 at Thr75 inhibits protein kinase (PKA) activity. In this study, we examined the effect of neurotensin on DARPP-32 Thr75 phosphorylation using mouse neostriatal slices. Neurotensin decreased the level of phospho-Thr75 DARPP-32 at 2 min of incubation, maximally to about 50% of control at a concentration of 1 micro m. Pretreatment with a combined neurotensin receptor type 1 (NTR1)/type 2 (NTR2) antagonist, SR142948, reduced the basal level of phospho-Thr75 DARPP-32 and abolished the ability of neurotensin to decrease DARPP-32 Thr75 phosphorylation. However, neither an NTR1 antagonist, SR48692, an NTR2 antagonist, levocabastine, nor the two combined affected the basal level and the neurotensin-mediated decrease in DARPP-32 Thr75 phosphorylation. The effect of neurotensin was abolished by tetrodotoxin (TTX) or MK801 plus CNQX, but not by SCH23390 or raclopride. These results indicate that neurotensin stimulates the release of glutamate by activating a hypothesized unidentified neurotensin receptor, resulting in the dephosphorylation of DARPP-32 at Thr75 by activating NMDA and AMPA receptors expressed at medium spiny neurons. Thus, neurotensin, by removing the inhibition of PKA by phospho-Thr75 DARPP-32, potentiates its signalling via the dopamine/D1 receptor/PKA/phospho-Thr34 DARPP-32/PP-1 cascade.

摘要

神经降压素是一种参与多巴胺能信号传导的神经肽。我们最近报道,神经降压素通过激活新纹状体神经元中的多巴胺D1型受体,刺激DARPP - 32(32 kDa的多巴胺和cAMP调节磷蛋白)在苏氨酸34(蛋白激酶A位点)处的磷酸化。DARPP - 32在苏氨酸75处也被细胞周期蛋白依赖性激酶5磷酸化,并且苏氨酸75处磷酸化形式的DARPP - 32抑制蛋白激酶(PKA)活性。在本研究中,我们使用小鼠新纹状体切片研究了神经降压素对DARPP - 32苏氨酸75磷酸化的影响。孵育2分钟时,神经降压素降低了磷酸化苏氨酸75 DARPP - 32的水平,在浓度为1微摩尔时最大降低至对照的约50%。用1型神经降压素受体(NTR1)/2型神经降压素受体(NTR2)联合拮抗剂SR142948预处理,降低了磷酸化苏氨酸75 DARPP - 32的基础水平,并消除了神经降压素降低DARPP - 32苏氨酸75磷酸化的能力。然而,单独的NTR1拮抗剂SR48692、NTR2拮抗剂左卡巴斯汀或两者联合均不影响基础水平以及神经降压素介导的DARPP - 32苏氨酸75磷酸化的降低。神经降压素的作用被河豚毒素(TTX)或MK801加CNQX消除,但未被SCH23390或雷氯必利消除。这些结果表明,神经降压素通过激活一种假定的未鉴定神经降压素受体刺激谷氨酸释放,通过激活中等棘状神经元表达的NMDA和AMPA受体导致DARPP - 32在苏氨酸75处去磷酸化。因此,神经降压素通过消除磷酸化苏氨酸75 DARPP - 32对PKA的抑制作用,增强了其通过多巴胺/D1受体/PKA/磷酸化苏氨酸34 DARPP - 32/蛋白磷酸酶1级联的信号传导。

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