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龙虾shal:与果蝇shal及特定神经元中的天然钾电流的比较。

Lobster shal: comparison with Drosophila shal and native potassium currents in identified neurons.

作者信息

Baro D J, Coniglio L M, Cole C L, Rodriguez H E, Lubell J K, Kim M T, Harris-Warrick R M

机构信息

Section of Neurobiology and Behavior, Cornell University, Ithaca, New York 14853, USA.

出版信息

J Neurosci. 1996 Mar 1;16(5):1689-701. doi: 10.1523/JNEUROSCI.16-05-01689.1996.

Abstract

The transient potassium (K+) current, or A-current (IA), plays an essential role in shaping the firing properties of identified neurons in the 14-cell pyloric network in the stomatogastric ganglion of the spiny lobster, Panulirus interruptus. The different cells in the pyloric network have distinct IAs. To begin to understand the molecular basis for IA heterogeneity, we examined the relationship between the Panulirus shal current, the IAs in the lateral pyloric (LP) and pyloric dilator (PY) cells, and the Drosophila shal current. After isolating a complete open reading frame for lobster shal 1, which shows significant sequence homology to the fly, mouse, and rat shal homologs, we used a single-cell reverse transcription polymerase chain reaction method to demonstrate that the shal 1 gene was expressed in the LP and PY cells. Next, we compared the lobster shal 1 current generated in a Xenopus oocyte expression system to the IAs in the LP and PY neurons as well as to the Drosophila shal current in Xenopus oocytes. While the transient K+ lobster shal 1 current was similar to the IAs in pyloric neurons, a detailed comparison shows that they are not identical and differ in kinetic and voltage-dependent parameters. The highly homologous lobster and fly shal genes also produce currents with some significant similarities and differences in an oocyte expression system.

摘要

瞬时钾离子(K+)电流,即A电流(IA),在多刺龙虾(Panulirus interruptus)口胃神经节中由14个细胞组成的幽门网络中,对特定神经元放电特性的形成起着至关重要的作用。幽门网络中的不同细胞具有不同的IA。为了初步了解IA异质性的分子基础,我们研究了龙虾shal电流、外侧幽门(LP)和幽门扩张肌(PY)细胞中的IA与果蝇shal电流之间的关系。在分离出龙虾shal 1的完整开放阅读框后,该阅读框与果蝇、小鼠和大鼠的shal同源物显示出显著的序列同源性,我们使用单细胞逆转录聚合酶链反应方法来证明shal 1基因在LP和PY细胞中表达。接下来,我们将非洲爪蟾卵母细胞表达系统中产生的龙虾shal 1电流与LP和PY神经元中的IA以及非洲爪蟾卵母细胞中的果蝇shal电流进行了比较。虽然瞬时K+龙虾shal 1电流与幽门神经元中的IA相似,但详细比较表明它们并不相同,在动力学和电压依赖性参数方面存在差异。高度同源的龙虾和果蝇shal基因在卵母细胞表达系统中产生的电流也有一些显著的异同。

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