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关于外毛细胞的膜运动活性和氯离子通量:从环境毒素三丁基锡中获得的经验教训。

On membrane motor activity and chloride flux in the outer hair cell: lessons learned from the environmental toxin tributyltin.

作者信息

Song Lei, Seeger Achim, Santos-Sacchi Joseph

机构信息

Otolaryngology, Yale University School of Medicine, 333 Cedar St., New Haven, CT 06510, USA.

出版信息

Biophys J. 2005 Mar;88(3):2350-62. doi: 10.1529/biophysj.104.053579. Epub 2004 Dec 13.

Abstract

The outer hair cell (OHC) underlies mammalian cochlea amplification, and its lateral membrane motor, prestin, which drives the cell's mechanical activity, is modulated by intracellular chloride ions. We have previously described a native nonselective conductance (G(metL)) that influences OHC motor activity via Cl flux across the lateral membrane. Here we further investigate this conductance and use the environmental toxin tributyltin (TBT) to better understand Cl-prestin interactions. Capitalizing on measures of prestin-derived nonlinear capacitance to gauge Cl flux across the lateral membrane, we show that the Cl ionophore TBT, which affects neither the motor nor G(metL) directly, is capable of augmenting the native flux of Cl in OHCs. These observations were confirmed using the chloride-sensitive dye MQAE. Furthermore, the compound's potent ability, at nanomolar concentrations, to equilibrate intra- and extracellular Cl concentrations is shown to surpass the effectiveness of G(metL) in promoting Cl flux, and secure a quantitative analysis of Cl-prestin interactions in intact OHCs. Using malate as an anion replacement, we quantify chloride effects on the nonlinear charge density and operating voltage range of prestin. Our data additionally suggest that ototoxic effects of organotins can derive from their disruption of OHC Cl homeostasis, ultimately interfering with anionic modulation of the mammalian cochlear amplifier. Notably, this observation identifies a new environmental threat for marine mammals by TBT, which is known to accumulate in the food chain.

摘要

外毛细胞(OHC)是哺乳动物耳蜗放大功能的基础,其侧膜上驱动细胞机械活动的马达蛋白—— prestin,受细胞内氯离子调节。我们之前描述过一种天然非选择性电导(G(metL)),它通过氯离子跨侧膜的通量影响OHC的马达活动。在此,我们进一步研究这种电导,并使用环境毒素三丁基锡(TBT)来更好地理解氯离子与prestin的相互作用。利用源自prestin的非线性电容测量来评估氯离子跨侧膜的通量,我们发现,既不直接影响马达蛋白也不影响G(metL)的氯离子载体TBT,能够增加OHC中氯离子的天然通量。使用对氯离子敏感的染料MQAE证实了这些观察结果。此外,该化合物在纳摩尔浓度下使细胞内和细胞外氯离子浓度达到平衡的强大能力,超过了G(metL)在促进氯离子通量方面的有效性,并确保了对完整OHC中氯离子与prestin相互作用的定量分析。使用苹果酸盐作为阴离子替代物,我们量化了氯离子对prestin的非线性电荷密度和工作电压范围的影响。我们的数据还表明,有机锡的耳毒性作用可能源于它们对OHC氯离子稳态的破坏,最终干扰哺乳动物耳蜗放大器的阴离子调节。值得注意的是,这一观察结果确定了TBT对海洋哺乳动物的一种新的环境威胁,已知TBT会在食物链中积累。

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