Lhuillier L, Dryer S E
Department of Biology and Biochemistry, University of Houston, Houston, Texas 77204-5513, USA.
J Neurophysiol. 1999 Sep;82(3):1627-31. doi: 10.1152/jn.1999.82.3.1627.
The developmental expression of Ca2+-activated K+ channels (KCa) in chick ciliary ganglion (CG) neurons is regulated by a target-derived avian isoform of TGFbeta1, which evokes a robust increase in the number of functional large-conductance (BK) KCa channels but which produces no change in their kinetics. However, CG neurons express multiple KCa channel subtypes. Here we show that TGFbeta1 regulates the gating properties of intermediate-conductance (IK) KCa channels in developing CG neurons. IK channels in inside-out patches excised from control E9 CG neurons became active on exposure to 1-5 microM free Ca2+ but then remained active on return to Ca2+-free salines. In contrast, IK channels in TGFbeta1-treated cells became active on exposure to 1-5 microM Ca2+, but became quiescent immediately on return to Ca2+-free salines. In contrast to its effects on BK channels, TGFbeta1 had no effect on the mean number of IK channels detected in excised patches. IK channels were not activated in cell-attached patches on E9 neurons depolarized by bath application of 145 mM KCl in the presence of 5 mM external Ca2+. However, BK channels were activated immediately by this procedure and were detected at a higher density in TGFbeta1-treated cells. In addition, analyses of macroscopic KCa fluctuations, and the voltage-dependence of KCa tail currents, suggest that IK channels do not contribute to voltage-evoked whole cell KCa. IK channels therefore may have some other function. These results indicate that the effects of TGFbeta1 on CG neurons entail distinct actions on multiple KCa channel subtypes.
鸡睫状神经节(CG)神经元中钙激活钾通道(KCa)的发育表达受一种源自靶标的禽类转化生长因子β1(TGFβ1)亚型调控,该亚型可使功能性大电导(BK)KCa通道数量显著增加,但其动力学特性并无改变。然而,CG神经元表达多种KCa通道亚型。在此我们表明,TGFβ1可调节发育中CG神经元的中电导(IK)KCa通道的门控特性。从对照E9期CG神经元上切下的内向外膜片中的IK通道在暴露于1 - 5微摩尔游离钙离子时被激活,但在回到无钙盐溶液后仍保持激活状态。相比之下,经TGFβ1处理的细胞中的IK通道在暴露于1 - 5微摩尔钙离子时被激活,但在回到无钙盐溶液后立即静止。与它对BK通道的作用相反,TGFβ1对在切下的膜片中检测到的IK通道的平均数量没有影响。在E9期神经元的细胞贴附膜片中,当在5毫摩尔外部钙离子存在下通过浴加145毫摩尔氯化钾使膜片去极化时,IK通道未被激活。然而,BK通道通过此程序立即被激活,并且在经TGFβ1处理的细胞中检测到的密度更高。此外,对宏观KCa波动以及KCa尾电流的电压依赖性分析表明,IK通道对电压诱发的全细胞KCa无贡献。因此,IK通道可能具有其他功能。这些结果表明,TGFβ1对CG神经元的作用涉及对多种KCa通道亚型的不同作用。