Li M, West J W, Numann R, Murphy B J, Scheuer T, Catterall W A
Department of Pharmacology, University of Washington, Seattle 98195.
Science. 1993 Sep 10;261(5127):1439-42. doi: 10.1126/science.8396273.
The function of voltage-gated sodium channels that are responsible for action potential generation in mammalian brain neurons is modulated by phosphorylation by adenosine 3',5'-monophosphate (cAMP)-dependent protein kinase (cA-PK) and by protein kinase C (PKC). Reduction of peak sodium currents by cA-PK in intact cells required concurrent activation of PKC and was prevented by blocking phosphorylation of serine 1506, a site in the inactivation gate of the channel that is phosphorylated by PKC but not by cA-PK. Replacement of serine 1506 with negatively charged amino acids mimicked the effect of phosphorylation. Conversion of the consensus sequence surrounding serine 1506 to one more favorable for cA-PK enhanced modulation of sodium currents by cA-PK. Convergent modulation of sodium channels required phosphorylation of serine 1506 by PKC accompanied by phosphorylation of additional sites by cA-PK. This regulatory mechanism may serve to integrate neuronal signals mediated through these parallel signaling pathways.
在哺乳动物脑神经元中负责动作电位产生的电压门控钠通道的功能,受到3',5'-环磷酸腺苷(cAMP)依赖性蛋白激酶(cA-PK)和蛋白激酶C(PKC)磷酸化的调节。在完整细胞中,cA-PK使钠电流峰值降低需要PKC同时激活,并且通过阻断丝氨酸1506的磷酸化可以防止这种降低,丝氨酸1506是通道失活门中的一个位点,可被PKC磷酸化,但不能被cA-PK磷酸化。用带负电荷的氨基酸取代丝氨酸1506模拟了磷酸化的效果。将丝氨酸1506周围的共有序列转变为更有利于cA-PK的序列,增强了cA-PK对钠电流的调节作用。钠通道的协同调节需要PKC对丝氨酸1506进行磷酸化,同时cA-PK对其他位点进行磷酸化。这种调节机制可能有助于整合通过这些平行信号通路介导的神经元信号。