Jia Zhanfeng, Bei Junjie, Rodat-Despoix Lise, Liu Boyi, Jia Qingzhong, Delmas Patrick, Zhang Hailin
Department of Pharmacology, Hebei Medical University, Shijiazhuang, China 050017.
J Gen Physiol. 2008 Jun;131(6):575-87. doi: 10.1085/jgp.200709924. Epub 2008 May 12.
M/KCNQ currents play a critical role in the determination of neuronal excitability. Many neurotransmitters and peptides modulate M/KCNQ current and neuronal excitability through their G protein-coupled receptors. Nerve growth factor (NGF) activates its receptor, a member of receptor tyrosine kinase (RTK) superfamily, and crucially modulates neuronal cell survival, proliferation, and differentiation. In this study, we studied the effect of NGF on the neuronal (rat superior cervical ganglion, SCG) M/KCNQ currents and excitability. As reported before, subpopulation SCG neurons with distinct firing properties could be classified into tonic, phasic-1, and phasic-2 neurons. NGF inhibited M/KCNQ currents by similar proportion in all three classes of SCG neurons but increased the excitability only significantly in tonic SCG neurons. The effect of NGF on excitability correlated with a smaller M-current density in tonic neurons. The present study indicates that NGF is an M/KCNQ channel modulator and the characteristic modulation of the neuronal excitability by NGF may have important physiological implications.
M/KCNQ电流在决定神经元兴奋性方面起着关键作用。许多神经递质和肽通过其G蛋白偶联受体调节M/KCNQ电流和神经元兴奋性。神经生长因子(NGF)激活其受体,该受体是受体酪氨酸激酶(RTK)超家族的成员,并对神经元细胞的存活、增殖和分化起着至关重要的调节作用。在本研究中,我们研究了NGF对神经元(大鼠颈上神经节,SCG)M/KCNQ电流和兴奋性的影响。如前所述,具有不同放电特性的SCG神经元亚群可分为紧张型、相位-1型和相位-2型神经元。NGF在所有三类SCG神经元中以相似的比例抑制M/KCNQ电流,但仅在紧张型SCG神经元中显著增加其兴奋性。NGF对兴奋性的影响与紧张型神经元中较小的M电流密度相关。本研究表明,NGF是一种M/KCNQ通道调节剂,NGF对神经元兴奋性的特征性调节可能具有重要的生理意义。