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Characterization of the Kv channels of mouse carotid body chemoreceptor cells and their role in oxygen sensing

机译:小鼠颈动脉体化学感受器细胞Kv通道的表征及其在氧传感中的作用

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摘要

As there are wide interspecies variations in the molecular nature of the O2-sensitive Kv channels in arterial chemoreceptors, we have characterized the expression of these channels and their hypoxic sensitivity in the mouse carotid body (CB). CB chemoreceptor cells were obtained from a transgenic mouse expressing green fluorescent protein (GFP) under the control of tyrosine hydroxylase (TH) promoter. Immunocytochemical identification of TH in CB cell cultures reveals a good match with GFP-positive cells. Furthermore, these cells show an increase in [Ca2+]i in response to low PO2, demonstrating their ability to engender a physiological response. Whole-cell experiments demonstrated slow-inactivating K+ currents with activation threshold around −30 mV and a bi-exponential kinetic of deactivation (τ of 6.24 ± 0.52 and 32.85 ± 4.14 ms). TEA sensitivity of the currents identified also two different components (IC50 of 17.8 ± 2.8 and 940.0 ± 14.7 μm). Current amplitude decreased reversibly in response to hypoxia, which selectively affected the fast deactivating component. Hypoxic inhibition was also abolished in the presence of low (10–50 μm) concentrations of TEA, suggesting that O2 interacts with the component of the current most sensitive to TEA. The kinetic and pharmacological profile of the currents suggested the presence of Kv2 and Kv3 channels as their molecular correlates, and we have identified several members of these two subfamilies by single-cell PCR and immunocytochemistry. This report represents the first functional and molecular characterization of Kv channels in mouse CB chemoreceptor cells, and strongly suggests that O2-sensitive Kv channels in this preparation belong to the Kv3 subfamily.
机译:由于在动脉化学感受器中对O2敏感的Kv通道的分子性质存在广泛的种间差异,因此我们表征了这些通道的表达及其在小鼠颈动脉(CB)中的低氧敏感性。 CB化学感受器细胞是从在酪氨酸羟化酶(TH)启动子控制下表达绿色荧光蛋白(GFP)的转基因小鼠获得的。在CB细胞培养物中TH的免疫细胞化学鉴定显示与GFP阳性细胞的良好匹配。此外,这些细胞对低PO2的响应显示[Ca 2 + ] i的增加,表明它们具有引起生理反应的能力。全细胞实验表明,缓慢激活的K + 电流的激活阈值约为-30 mV,并且具有双指数失活动力学(τ为6.24±0.52和32.85±4.14 ms)。电流的TEA灵敏度还确定了两个不同的分量(IC50为17.8±2.8和940.0±14.7μm)。响应于缺氧,电流幅度可逆地降低,这选择性地影响了快速失活的成分。在低浓度(10–50μm)的TEA存在下,低氧抑制也被取消,这表明O2与当前对TEA最敏感的成分相互作用。目前的动力学和药理学特征表明存在Kv2和Kv3通道是它们的分子相关性,并且我们已经通过单细胞PCR和免疫细胞化学鉴定了这两个亚家族的几个成员。该报告代表了小鼠CB化学感受器细胞中Kv通道的第一个功能和分子表征,并强烈暗示此制备物中O2敏感的Kv通道属于Kv3亚家族。

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