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首页> 外文期刊>Journal of Neurophysiology >Activation of protein kinase C increases neuronal excitability by regulating persistent Na+ current in mouse neocortical slices.
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Activation of protein kinase C increases neuronal excitability by regulating persistent Na+ current in mouse neocortical slices.

机译:蛋白激酶C的激活通过调节小鼠新皮质切片中持续的Na +电流来增加神经元兴奋性。

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摘要

Effects of the protein kinase C activating phorbol ester, phorbol 12-myristate 13-acetate (PMA), were studied in whole cell recordings from layer V neurons in slices of mouse somatosensory neocortex. PMA was applied intracellularly (100 nM to 1 microM) to restrict its action to the cell under study. In current-clamp recordings, it enhanced neuronal excitability by inducing a 10- to 20-mV decrease in voltage threshold for action-potential generation. Because spike threshold in neocortical neurons critically depends on the properties of persistent Na+ current (INaP), effects of PMA on this current were studied in voltage clamp. After blocking K+ and Ca2+ currents, INaP was revealed by applying slow depolarizing voltage ramps from -70 to 0 mV. Intracellular PMA induced a decrease in INaP at very depolarized membrane potentials. It also shifted activation of INaP in the hyperpolarizing direction, however, such that there was a significant increase in persistent inward current at potentials more negative than -45 mV. When tetrodotoxin (TTX) was added to the bath, blocking INaP and leaving only an outward nonspecific cationic current (Icat), PMA had no apparent effect on responses to voltage ramps. Thus PMA did not affect Icat, and it did not induce any additional current. Intracellular application of the inactive PMA analogue, 4 alpha-PMA, did not affect INaP. The specific protein kinase C inhibitors, chelerythrine (20 microM) and calphostin C (10 microM), blocked the effect of PMA on INaP. The data suggest that PMA enhances neuronal excitability via a protein kinase C-mediated increase in INaP at functionally critical subthreshold voltages. This novel effect would modulate all neuronal functions that are influenced by INaP, including synaptic integration and active backpropagation of action potential from the soma into the dendrites.
机译:在小鼠体感新皮层切片的V层神经元的全细胞记录中,研究了蛋白激酶C激活佛波酯,佛波12-肉豆蔻酸酯13-乙酸酯(PMA)的作用。将PMA应用于细胞内(100 nM至1 microM)以限制其对所研究细胞的作用。在电流钳记录中,它通过引起动作电位产生的电压阈值降低10至20 mV,从而增强了神经元兴奋性。由于新皮质神经元的尖峰阈值主要取决于持久性Na +电流(INaP)的特性,因此在电压钳位中研究了PMA对此电流的影响。阻断K +和Ca2 +电流后,通过施加从-70到0 mV的缓慢去极化电压斜坡来显示INaP。细胞内PMA在极去极化的膜电位下诱导INaP降低。它也使INaP的激活向超极化方向移动,但是,在大于-45 mV的负电势下,持续的内向电流显着增加。当将河豚毒素(TTX)添加到浴液中时,阻断INaP并仅留下向外的非特异性阳离子电流(Icat),PMA对电压斜坡的响应没有明显影响。因此,PMA不会影响Icat,也不会感应任何额外的电流。灭活的PMA类似物4 alpha-PMA在细胞内的应用不会影响INaP。特定的蛋白激酶C抑制剂白屈菜红碱(20 microM)和钙磷蛋白C(10 microM)阻止了PMA对INaP的作用。数据表明,PMA通过蛋白激酶C介导的在功能性临界亚阈值电压下INaP的增加来增强神经元兴奋性。这种新颖的作用将调节受INaP影响的所有神经元功能,包括突触整合和动作电位从躯体向树突的主动反向传播。

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