Vega-Saenz de Miera E, Moreno H, Fruhling D, Kentros C, Rudy B
Department of Physiology and Biophysics, New York University Medical Center, New York 10016.
Proc Biol Sci. 1992 Apr 22;248(1321):9-18. doi: 10.1098/rspb.1992.0036.
Transient voltage-dependent potassium (K+) currents, also known as A currents, have been of great interest to neurophysiologists due to their special roles in neuronal excitability. Several cDNAs encoding transcripts expressing A currents have been characterized. Recently, a cDNA (KShIIIC or Raw3) was isolated which expresses an unusual A current that is highly sensitive to TEA, and activates at potentials more positive than -20 mV. Channels containing this protein may have specialized roles in modulating the electrical behaviour of neurons. Here we report the isolation and characterization of two rat cDNAs corresponding to two alternatively spliced transcripts (KShIIID.1 and KShIIID.2) from another gene (KShIIID) of the same subfamily as KShIIIC, the ShIII or Shaw-related gene subfamily. KShIIID.1 also expresses an unusual high-voltage-activating, TEA-sensitive A-type channel. There are, however, significant differences between KShIIIC and KShIIID channels which may have interesting functional consequences. The two most important differences are: (i) KShIIID channels conduct in the steady-state over a much broader window of potentials than KShIIIC; this reflects differences between the kinetic schemes of the two channels; and (ii) KShIIID inactivates with significantly slower kinetics than KShIIIC. The identification of KShIIID transcripts contributes to our knowledge of the molecular components that may determine the functional diversity of A currents and provides exciting opportunities to increase our understanding of the structure and function of K+ channels.
瞬时电压依赖性钾(K+)电流,也被称为A电流,因其在神经元兴奋性中的特殊作用而备受神经生理学家关注。几个编码表达A电流转录本的cDNA已被鉴定。最近,分离出一个cDNA(KShIIIC或Raw3),它表达一种对TEA高度敏感且在高于-20 mV的电位时激活的异常A电流。含有这种蛋白质的通道可能在调节神经元的电行为中具有特殊作用。在此,我们报告从与KShIIIC同属一个亚家族(ShIII或Shaw相关基因亚家族)的另一个基因(KShIIID)中分离出两个大鼠cDNA,并对其相应的两个选择性剪接转录本(KShIIID.1和KShIIID.2)进行了鉴定。KShIIID.1也表达一种异常的高电压激活、对TEA敏感的A型通道。然而,KShIIIC和KShIIID通道之间存在显著差异,这可能具有有趣的功能后果。两个最重要的差异是:(i)KShIIID通道在稳态下的导通电位窗口比KShIIIC宽得多;这反映了两个通道动力学机制的差异;(ii)KShIIID的失活动力学比KShIIIC慢得多。KShIIID转录本的鉴定有助于我们了解可能决定A电流功能多样性的分子成分,并为增进我们对K+通道结构和功能的理解提供了令人兴奋的机会。