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首页> 外文期刊>The European Journal of Neuroscience >P/Q-type and T-type calcium channels, but not type 3 transient receptor potential cation channels, are involved in inhibition of dendritic growth after chronic metabotropic glutamate receptor type 1 and protein kinase C activation in cerebellar Purkinje cells.
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P/Q-type and T-type calcium channels, but not type 3 transient receptor potential cation channels, are involved in inhibition of dendritic growth after chronic metabotropic glutamate receptor type 1 and protein kinase C activation in cerebellar Purkinje cells.

机译:P / Q型和T型钙通道,但不是3型瞬时受体电位阳离子通道,在小肠Purkinje细胞中慢性代谢型1型谷氨酸受体受体和蛋白激酶C活化后,参与树突生长的抑制作用。

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摘要

The development of a neuronal dendritic tree is modulated both by signals from afferent fibers and by an intrinsic program. We have previously shown that chronic activation of either type 1 metabotropic glutamate receptors (mGluR1s) or protein kinase C (PKC) in organotypic cerebellar slice cultures of mice and rats severely inhibits the growth and development of the Purkinje cell dendritic tree. The signaling events linking receptor activation to the regulation of dendritic growth remain largely unknown. We have studied whether channels allowing the entry of Ca(2+) into Purkinje cells, in particular the type 3 transient receptor potential cation channels (TRPC3s), P/Q-type Ca(2+) channels, and T-type Ca(2+) channels, might be involved in signaling after mGluR1 or PKC stimulation. We show that the inhibition of dendritic growth seen after mGluR1 or PKC stimulation is partially rescued by pharmacological blockade of P/Q-type and T-type Ca(2+) channels, indicating that activation of these channels mediating Ca(2+) influx contributes to the inhibition of dendritic growth. In contrast, the absence of Ca(2+) -permeable TRPC3s in TRPC3-deficient mice or pharmacological blockade had no effect on mGluR1-mediated and PKC-mediated inhibition of Purkinje cell dendritic growth. Similarly, blockade of Ca(2+) influx through glutamate receptor δ2 or R-type Ca(2+) channels or inhibition of release from intracellular stores did not influence mGluR1-mediated and PKC-mediated inhibition of Purkinje cell dendritic growth. These findings suggest that both T-type and P/Q-type Ca(2+) channels, but not TRPC3 or other Ca(2+) -permeable channels, are involved in mGluR1 and PKC signaling leading to the inhibition of dendritic growth in cerebellar Purkinje cells.
机译:神经元树突树的发育受传入纤维信号和内在程序的调节。我们以前已经表明,小鼠和大鼠的器官型小脑切片培养物中1型代谢型谷氨酸受体(mGluR1s)或蛋白激酶C(PKC)的长期激活严重抑制了Purkinje细胞树突树的生长和发育。将受体激活与树突状生长的调节联系起来的信号传递事件仍然未知。我们研究了是否允许Ca(2+)进入Purkinje细胞的通道,特别是3型瞬时受体电位阳离子通道(TRPC3s),P / Q型Ca(2+)通道和T型Ca( 2+)通道,可能参与了mGluR1或PKC刺激后的信号传导。我们显示mGluR1或PKC刺激后看到的树突生长的抑制是通过药理上的P / Q型和T型Ca(2+)通道,部分挽救了,表明这些通道介导Ca(2+)涌入的激活有助于抑制树突生长。相反,在缺乏TRPC3的小鼠中没有Ca(2+)渗透性TRPC3或药理学封锁对mGluR1介导的和PKC介导的Purkinje细胞树突状生长的抑制没有影响。同样,通过谷氨酸受体δ2或R型Ca(2+)通道阻止Ca(2+)流入或抑制从细胞内存储释放不会影响mGluR1介导和PKC介导的Purkinje细胞树突状生长的抑制。这些发现表明,T型和P / Q型Ca(2+)通道均不参与TRPC3或其他Ca(2+)渗透性通道,而参与mGluR1和PKC信号传导导致树突状生长的抑制。小脑浦肯野细胞。

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