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多巴胺调节内侧前额叶皮质锥体神经元的内向整流钾电流。

Dopamine modulates inwardly rectifying potassium currents in medial prefrontal cortex pyramidal neurons.

作者信息

Dong Yan, Cooper Donald, Nasif Fernando, Hu Xiu-Ti, White Francis J

机构信息

Departments of Cellular and Molecular Pharmacology and Neuroscience, Finch University of Health Sciences/The Chicago Medical School, North Chicago, Illinois 60064, USA.

出版信息

J Neurosci. 2004 Mar 24;24(12):3077-85. doi: 10.1523/JNEUROSCI.4715-03.2004.

Abstract

Dopamine (DA) modulation of excitability in medial prefrontal cortex (mPFC) pyramidal neurons has attracted considerable attention because of the involvement of mPFC DA in several neuronal disorders. Here, we focused on DA modulation of inwardly rectifying K(+) current (IRKC) in pyramidal neurons acutely dissociated from rat mPFC. A Cs(+)-sensitive whole-cell IRKC was elicited by hyperpolarizing voltage steps from a holding potential of -50 mV. DA (20 microm) reduced IRKC amplitude, as did selective stimulation of DA D(1) or D(2) class receptors (D(1)Rs and D(2)Rs). D(1)Rs activate, whereas D(2)Rs inhibit, the adenylyl cyclase-cAMP-protein kinase A (PKA) signaling pathway. Suppression of IRKC by D(2)R stimulation was attributable to decreased PKA activity because similar inhibition was observed with PKA inhibitors, whereas enhancing PKA activity increased IRKC. This suggests that the DA D(1)R suppression of IRKC occurred through a PKA phosphorylation-independent process. Using outside-out patches of mPFC pyramidal neurons, which preclude involvement of cytosolic signaling molecules, we observed a Cs(+)-sensitive macroscopic IRKC that was suppressed by the membrane-permeable cyclic nucleotide Sp-cAMP but was unaffected by non-nucleotide modulators of PKA, suggesting direct interactions of the cyclic nucleotides with IRK channels. Our results indicate that DA suppresses IRKC through two mechanisms: D(1)R activation of cAMP and direct interactions of the nucleotide with IRK channels and D(2)R-mediated dephosphorylation of IRK channels. The DA modulation of IRKC indicates that ambient DA would tend to increase responsiveness to excitatory inputs when PFC neurons are near the resting membrane potential and may provide a mechanism by which DA impacts higher cognitive function.

摘要

由于内侧前额叶皮质(mPFC)多巴胺(DA)参与多种神经元疾病,mPFC锥体神经元兴奋性的DA调节已引起广泛关注。在此,我们聚焦于从大鼠mPFC急性分离的锥体神经元中DA对内向整流钾电流(IRKC)的调节。通过从 -50 mV的钳制电位进行超极化电压阶跃来诱发Cs(+)敏感的全细胞IRKC。DA(20微摩尔)降低了IRKC幅度,对DA D(1)或D(2)类受体(D(1)Rs和D(2)Rs)的选择性刺激也有同样效果。D(1)Rs激活,而D(2)Rs抑制腺苷酸环化酶 - cAMP - 蛋白激酶A(PKA)信号通路。D(2)R刺激对IRKC的抑制归因于PKA活性降低,因为用PKA抑制剂可观察到类似抑制,而增强PKA活性则增加IRKC。这表明DA D(1)R对IRKC的抑制是通过独立于PKA磷酸化的过程发生的。使用mPFC锥体神经元的外侧膜片,这排除了胞质信号分子的参与,我们观察到一种Cs(+)敏感的宏观IRKC,它被膜通透性环核苷酸Sp - cAMP抑制,但不受PKA的非核苷酸调节剂影响,提示环核苷酸与IRK通道直接相互作用。我们的结果表明,DA通过两种机制抑制IRKC:D(1)R激活cAMP以及核苷酸与IRK通道直接相互作用,和D(2)R介导的IRK通道去磷酸化。DA对IRKC的调节表明,当PFC神经元接近静息膜电位时,环境DA倾向于增加对兴奋性输入的反应性,并可能提供一种DA影响更高认知功能的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ec/6729848/30b416f358c0/zns0130488590008.jpg

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