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促甲状腺激素释放激素对异源三聚体大鼠erg1a/1b钾通道的作用主要由rerg1b亚基主导。

Effects of TRH on heteromeric rat erg1a/1b K+ channels are dominated by the rerg1b subunit.

作者信息

Kirchberger Niklas M, Wulfsen Iris, Schwarz Jürgen R, Bauer Christiane K

机构信息

Institut für Angewandte Physiologie, Zentrum für Experimentelle Medizin, Universitätsklinikum Hamburg-Eppendorf, Martinistrasse 52, D-20246 Hamburg, Germany.

出版信息

J Physiol. 2006 Feb 15;571(Pt 1):27-42. doi: 10.1113/jphysiol.2005.101667. Epub 2005 Dec 8.

Abstract

The erg1a (HERG) K+ channel subunit and its N-terminal splice variant erg1b are coexpressed in several tissues and both isoforms have been shown to form heteromultimeric erg channels in heart and brain. The reduction of erg1a current by thyrotropin-releasing hormone (TRH) is well studied, but no comparable data exist for erg1b. Since TRH and TRH receptors are widely expressed in the brain, we have now studied the different TRH effects on the biophysical properties of homomeric rat erg1b as well as heteromeric rat erg1a/1b channels. The erg channels were overexpressed in the clonal somatomammotroph pituitary cell line GH3/B6, which contains TRH receptors and endogenous erg channels. Compared to rerg1a, homomeric rerg1b channels exhibited not only faster deactivation kinetics, but also considerably less steady-state inactivation, and half-maximal activation occurred at about 10 mV more positive potentials. Coexpression of both isoforms resulted in erg currents with intermediate properties concerning the deactivation kinetics, whereas rerg1a dominated the voltage dependence of activation and rerg1b strongly influenced steady-state inactivation. Application of TRH induced a reduction of maximal erg conductance for all tested erg1 currents without effects on the voltage dependence of steady-state inactivation. Nevertheless, homomeric rerg1b channels significantly differed in their response to TRH from rerg1a channels. The TRH-induced shift in the activation curve to more positive potentials, the dramatic slowing of activation and the acceleration of deactivation typical for rerg1a modulation were absent in rerg1b channels. Surprisingly, most effects of TRH on heteromeric rerg1 channels were dominated by the rerg1b subunit.

摘要

erg1a(HERG)钾通道亚基及其N端剪接变体erg1b在多种组织中共表达,并且两种亚型均已被证明在心脏和大脑中形成异源多聚体erg通道。促甲状腺激素释放激素(TRH)对erg1a电流的降低作用已得到充分研究,但关于erg1b尚无类似数据。由于TRH和TRH受体在大脑中广泛表达,我们现在研究了TRH对同源大鼠erg1b以及异源大鼠erg1a/1b通道生物物理特性的不同影响。erg通道在克隆的生长激素催乳素垂体细胞系GH3/B6中过表达,该细胞系含有TRH受体和内源性erg通道。与rerg1a相比,同源rerg1b通道不仅表现出更快的失活动力学,而且稳态失活也明显较少,半数最大激活发生在约正10 mV的电位。两种亚型的共表达导致erg电流在失活动力学方面具有中间特性,而rerg1a主导激活的电压依赖性,rerg1b强烈影响稳态失活。TRH的应用导致所有测试的erg1电流的最大erg电导降低,而对稳态失活的电压依赖性没有影响。然而,同源rerg1b通道对TRH的反应与rerg1a通道有显著差异。rerg1b通道中不存在TRH诱导的激活曲线向更正电位的偏移、典型的rerg1a调节中激活的显著减慢和失活的加速。令人惊讶的是,TRH对异源rerg1通道的大多数影响由rerg1b亚基主导。

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