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从 ICC 和与小鼠肌间神经丛相关的周细胞原位记录的超大通道。

Maxi-channels recorded in situ from ICC and pericytes associated with the mouse myenteric plexus.

机构信息

Farncombe Family Digestive Health Research Institute, McMaster University, Hamilton, ON, Canada.

出版信息

Am J Physiol Cell Physiol. 2012 Apr 1;302(7):C1055-69. doi: 10.1152/ajpcell.00334.2011. Epub 2011 Dec 7.

Abstract

Ion channels are fundamental to gastrointestinal pacemaking by interstitial cells of Cajal (ICC). Previously, we have recorded a high-conductance chloride channel (HCCC) from ICC, both in culture and in situ, associated with the myenteric plexus. The biophysical properties of the HCCC (conductance, subconductances, voltage- and time-dependent inactivation) suggest it is a member of a class called the maxi-anion channels. In this study we further investigated the properties of the HCCC in situ. Our main finding was that the HCCC is not strictly a chloride channel but has a relative sodium-chloride permeability (P(Na/Cl)) of 0.76 to 1.64 (depending on the method of measurement). Therefore, we have renamed the HCCC the "maxi-channel." A maxi-channel was also expressed by pericytes associated with the vasculature near the myenteric plexus. This had a lower P(Na/Cl) (0.33 to 0.49, depending on the method of measurement) but similar conductance (326 ± 7 vs. 316 ± 24 pS for ICC). This is the first report of cation permeability equaling anion permeability in a maxi-anion channel. As such, the properties of the maxi-channels described in this article may have implications for the maxi-anion channel field, as well as for studies of their role in ICC and pericytes.

摘要

离子通道是胃肠道起搏细胞(ICC)间质细胞的基本组成部分。此前,我们已经在培养和原位记录到与肌间神经丛相关的 ICC 中的一种高电导氯离子通道(HCCC)。HCCC 的生物物理特性(电导、亚电导、电压和时间依赖性失活)表明它是一类称为最大阴离子通道的成员。在这项研究中,我们进一步研究了原位 HCCC 的特性。我们的主要发现是,HCCC 不是严格的氯离子通道,而是具有相对的钠离子-氯离子通透性(P(Na/Cl))为 0.76 至 1.64(取决于测量方法)。因此,我们将 HCCC 重新命名为“最大通道”。在肌间神经丛附近的血管周围细胞中也表达了一种最大通道。它的 P(Na/Cl)较低(取决于测量方法,为 0.33 至 0.49),但电导相似(ICC 为 326 ± 7 与 316 ± 24 pS)。这是在最大阴离子通道中阳离子通透性等于阴离子通透性的第一个报道。因此,本文描述的最大通道特性可能对最大阴离子通道领域以及它们在 ICC 和周细胞中的作用研究具有重要意义。

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