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Single-channel properties of a volume-sensitive anion conductance. Current activation occurs by abrupt switching of closed channels to an open state

机译:体积敏感阴离子电导的单通道特性。通过将关闭的通道突然切换到打开状态来进行电流激活

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摘要

Swelling-induced loss of organic osmolytes from cells is mediated by an outwardly rectified, volume-sensitive anion channel termed VSOAC (Volume-Sensitive Organic osmolyte/Anion Channel). Similar swelling- activated anion channels have been described in numerous cell types. The unitary conductance and gating kinetics of VSOAC have been uncertain, however. Stationary noise analysis and single-channel measurements have produced estimates for the unitary conductance of swelling-activated, outwardly rectified anion channels that vary by > 15-fold. We used a combination of stationary and nonstationary noise analyses and single-channel measurements to estimate the unitary properties of VSOAC. Current noise was analyzed initially by assuming that graded changes in macroscopic current were due to graded changes in channel open probability. Stationary noise analysis predicts that the unitary conductance of VSOAC is approximately 1 pS at 0 mV. In sharp contrast, nonstationary noise analysis demonstrates that VSOAC is a 40-50 pS channel at +120 mV (approximately 15 pS at 0 mV). Measurement of single-channel events in whole-cell currents and outside- out membrane patches confirmed the nonstationary noise analysis results. The discrepancy between stationary and nonstationary noise analyses and single-channel measurements indicates that swelling- induced current activation is not mediated by a graded increase in channel open probability as assumed initially. Instead, activation of VSOAC appears to involve an abrupt switching of single channels from an OFF state, where channel open probability is zero, to an ON state, where open probability is near unity.
机译:溶胀诱导的有机渗透物从细胞中的损失是由向外整流的,对体积敏感的阴离子通道(称为VSOAC(体积敏感的有机渗透物/阴离子通道))介导的。在多种细胞类型中已经描述了类似的溶胀活化的阴离子通道。但是,VSOAC的单位电导和门控动力学还不确定。固定噪声分析和单通道测量已得出膨胀激活的,向外整流的阴离子通道的整体电导的估计值,其变化幅度> 15倍。我们结合使用了静态和非静态噪声分析以及单通道测量来估计VSOAC的单一属性。最初通过假设宏观电流的分级变化是由于通道打开概率的分级变化引起的,来分析电流噪声。静态噪声分析预测,VSOAC的单位电导在0 mV时约为1 pS。与之形成鲜明对比的是,非平稳噪声分析表明,VSOAC在+120 mV时为40-50 pS通道(在0 mV时约为15 pS)。对全细胞电流和外向膜补丁中单通道事件的测量证实了非平稳噪声分析结果。静态和非静态噪声分析与单通道测量之间的差异表明,膨胀感生的电流激活并不像最初假设的那样由通道打开概率的逐步增加来调节。取而代之的是,VSOAC的激活似乎涉及将单个通道从通道打开概率为零的OFF状态突然切换为打开概率接近于1的ON状态的突然切换。

著录项

  • 期刊名称 The Journal of General Physiology
  • 作者

  • 作者单位
  • 年(卷),期 1995(105),5
  • 年度 1995
  • 页码 643–660
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类 人体生理学;
  • 关键词

  • 入库时间 2022-08-17 11:52:33

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