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Akt激活对于生长因子诱导发育中的副交感神经元功能性钾钙通道的转运是必需的。

Akt activation is necessary for growth factor-induced trafficking of functional K(Ca) channels in developing parasympathetic neurons.

作者信息

Chae Kwon-Seok, Martin-Caraballo Miguel, Anderson Marc, Dryer Stuart E

机构信息

Deptartment of Biology and Biochemistry, University of Houston, Houston, TX 77204-5513, USA.

出版信息

J Neurophysiol. 2005 Mar;93(3):1174-82. doi: 10.1152/jn.00796.2004. Epub 2004 Oct 27.

Abstract

The protein kinase Akt is a crucial regulator of neuronal survival and apoptosis. Here we show that Akt activation is necessary for mobilization of large-conductance K(Ca) channels in ciliary ganglion (CG) neurons evoked by beta-neuregulin-1 (NRG1) and transforming growth factor-beta1 (TGFbeta1). Application of NRG1 to embryonic day 9 (E9) CG neurons increased Akt phosphorylation, as observed previously for TGF(beta)1. NRG1- and TGF(beta)1-evoked stimulation of K(Ca) is blocked by inhibitors of PI3K by overexpression of a dominant-negative form of Akt, by overexpression of CTMP, an endogenous negative regulator of Akt, and by application of the Akt inhibitor 1L-6-hydroxymethyl-chiro-inositol 2-(R)-2-O-methyl-3-O-octadecylcarbonate (HIMO). Conversely, overexpression of a constitutively-active form of Akt was sufficient by itself to increase mobilization of functional K(Ca) channels. NRG1 and TGF(beta)1 evoked an Akt-dependent increase in cell-surface SLO alpha-subunits. These procedures have no effect on voltage-activated Ca2+ currents. Thus Akt plays an essential role in the developmental regulation of excitability in CG neurons.

摘要

蛋白激酶Akt是神经元存活和凋亡的关键调节因子。在此我们表明,Akt激活对于β-神经调节蛋白-1(NRG1)和转化生长因子-β1(TGFβ1)诱发的睫状神经节(CG)神经元中大电导钾钙通道的动员是必需的。将NRG1应用于胚胎第9天(E9)的CG神经元可增加Akt磷酸化,这与先前观察到的TGFβ1的情况相同。NRG1和TGFβ1诱发的钾钙通道刺激被PI3K抑制剂、显性负性形式的Akt过表达、Akt的内源性负调节因子CTMP的过表达以及Akt抑制剂1L-6-羟甲基-手性-肌醇2-(R)-2-O-甲基-3-O-十八烷基碳酸酯(HIMO)所阻断。相反,组成型活性形式的Akt过表达本身就足以增加功能性钾钙通道的动员。NRG1和TGFβ1诱发细胞表面SLOα亚基的Akt依赖性增加。这些操作对电压激活的钙电流没有影响。因此,Akt在CG神经元兴奋性的发育调节中起重要作用。

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