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jShaw1,一种来自水螅纲海蜇属 Polyorchis penicillatus 的低阈值、快速激活的 K(v)3。

jShaw1, a low-threshold, fast-activating K(v)3 from the hydrozoan jellyfish Polyorchis penicillatus.

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Alberta T6G 2E9, Canada.

出版信息

J Exp Biol. 2011 Sep 15;214(Pt 18):3124-37. doi: 10.1242/jeb.057000.

Abstract

Voltage-gated potassium (K(v)) channels work in concert with other ion channels to determine the frequency and duration of action potentials in excitable cells. Little is known about K(v)3 channels from invertebrates, but those that have been characterized generally display slow kinetics. Here, we report the cloning and characterization of jShaw1, the first K(v)3 isolated from a cnidarian, the jellyfish Polyorchis penicillatus, in comparison with mouse K(v)3.1 and K(v)3.2. Using a two-electrode voltage clamp on Xenopus laevis oocytes expressing the channels, we compared steady-state and kinetic properties of macroscopic currents. jShaw1 is fast activating, and opens at potentials approximately 40 mV more hyperpolarized than the mouse K(v)3 channels. There is an inverse relationship between the number of positive charges on the voltage sensor and the half-activation voltage of the channel, contrary to what would be expected with the simplest model of voltage sensitivity. jShaw1 has kinetic characteristics that are substantially different from the mammalian K(v)3 channels, including a much lower sensitivity of early activation rates to incremental voltage changes, and a much faster voltage-dependent transition in the last stages of opening. jShaw1 opening kinetics were affected little by pre-depolarization voltage, in contrast to both mouse channels. Similar to the mouse channels, jShaw1 was half-blocked by 0.7 mmol l(-1) tetraethyl ammonium and 5 mmol l(-1) 4-aminopyridine. Comparison of sequence and functional properties of jShaw1 with the mouse and other reported K(v)3 channels helps to illuminate the general relationship between amino acid sequence and electrophysiological activity in this channel family.

摘要

电压门控钾 (K(v)) 通道与其他离子通道协同作用,决定可兴奋细胞动作电位的频率和持续时间。关于无脊椎动物的 K(v)3 通道知之甚少,但已鉴定的那些通常显示出缓慢的动力学特性。在这里,我们报告了 jShaw1 的克隆和特性,这是第一种从刺胞动物、水母 Polyorchis penicillatus 中分离出来的 K(v)3,与小鼠 K(v)3.1 和 K(v)3.2 进行比较。使用在表达通道的非洲爪蟾卵母细胞上的双电极电压钳,我们比较了宏观电流的稳态和动力学特性。jShaw1 快速激活,在比小鼠 K(v)3 通道更超极化约 40 mV 的电位下打开。在电压传感器上的正电荷数量与通道的半激活电压之间存在反比关系,这与最简单的电压敏感性模型所预期的相反。jShaw1 具有与哺乳动物 K(v)3 通道显著不同的动力学特性,包括早期激活率对增量电压变化的敏感性低得多,以及在打开的最后阶段更快的电压依赖性转变。jShaw1 的打开动力学受预去极化电压的影响很小,与两种小鼠通道都不同。与小鼠通道相似,jShaw1 被 0.7 mmol l(-1) 四乙铵和 5 mmol l(-1) 4-氨基吡啶半阻断。jShaw1 与小鼠和其他报道的 K(v)3 通道的序列和功能特性的比较有助于阐明该通道家族中氨基酸序列和电生理活性之间的一般关系。

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