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缝隙连接蛋白 1 通道在异源系统和哺乳动物味觉细胞中的 ATP 通透性是可有可无的。

The ATP permeability of pannexin 1 channels in a heterologous system and in mammalian taste cells is dispensable.

机构信息

Institute of Cell Biophysics, Russian Academy of Sciences, Institutional Street 3, Pushchino, Moscow Region, 142290, Russia.

出版信息

J Cell Sci. 2012 Nov 15;125(Pt 22):5514-23. doi: 10.1242/jcs.111062. Epub 2012 Sep 6.

Abstract

Afferent output in type II taste cells is mediated by ATP liberated through ion channels. It is widely accepted that pannexin 1 (Panx1) channels are responsible for ATP release in diverse cell types, including taste cells. While biophysical evidence implicates slow deactivation of ion channels following ATP release in taste cells, recombinant Panx1 activates and deactivates rapidly. This inconsistency could indicate that the cellular context specifies Panx1 functioning. We cloned Panx1 from murine taste tissue, and heterologously expressed it in three different cell lines: HEK-293, CHO and neuroblastoma SK-N-SH cells. In all three cell lines, Panx1 transfection yielded outwardly rectifying anion channels that exhibited fast gating and negligible permeability to anions exceeding 250 Da. Despite expression of Panx1, the host cells did not liberate ATP upon stimulation, making it unclear whether Panx1 is involved in taste-related ATP secretion. This issue was addressed using mice with genetic ablation of the Panx1 gene. The ATP-biosensor assay revealed that, in taste cells devoid of Panx1, ATP secretion was robust and apparently unchanged compared with the control. Our data suggest that Panx1 alone forms a channel that has insufficient permeability to ATP. Perhaps, a distinct subunit and/or a regulatory circuit that is absent in taste cells is required to enable a high ATP-permeability mode of a native Panx1-based channel.

摘要

II 型味觉细胞的传入输出由通过离子通道释放的 ATP 介导。广泛认为,pannexin 1(Panx1)通道负责包括味觉细胞在内的多种细胞类型中 ATP 的释放。尽管生物物理证据表明,味觉细胞中 ATP 释放后离子通道的缓慢失活,但重组 Panx1 快速激活和失活。这种不一致可能表明细胞环境决定了 Panx1 的功能。我们从鼠味觉组织中克隆了 Panx1,并在三种不同的细胞系中异源表达:HEK-293、CHO 和神经母细胞瘤 SK-N-SH 细胞。在所有三种细胞系中,Panx1 转染产生了具有外向整流特性的阴离子通道,其具有快速门控和对超过 250 Da 的阴离子的可忽略不计的通透性。尽管表达了 Panx1,但宿主细胞在刺激时并未释放 ATP,这使得不清楚 Panx1 是否参与与味觉相关的 ATP 分泌。使用基因敲除 Panx1 基因的小鼠解决了这个问题。ATP 生物传感器测定法显示,在缺乏 Panx1 的味觉细胞中,ATP 分泌是强大的,与对照相比显然没有变化。我们的数据表明,Panx1 本身形成的通道对 ATP 的通透性不足。也许,味觉细胞中缺乏独特的亚基和/或调节回路,需要启用基于天然 Panx1 的通道的高 ATP 通透性模式。

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