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Histidine Residues Are Responsible for Bidirectional Effects of Zinc on Acid-Sensing Ion Channel 1a/3 Heteromeric Channels

机译:组氨酸残基负责锌对酸感测离子通道1a / 3异位通道的双向效应

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摘要

Acid-sensing ion channel (ASIC) subunits 1a and 3 are highly expressed in central and peripheral sensory neurons, respectively. Endogenous biomolecule zinc plays a critical role in physiological and pathophysiological conditions. Here, we found that currents recorded from heterologously expressed ASIC1a/3 channels using the whole-cell patch-clamp technique were regulated by zinc with dual effects. Co-application of zinc dose-dependently potentiated both peak amplitude and the sustained component of heteromeric ASIC1a/3 currents; pretreatment with zinc between 3 to 100 µM exerted the same potentiation as co-application. However, pretreatment with zinc induced a significant inhibition of heteromeric ASIC1a/3 channels when zinc concentrations were over 250 µM. The potentiation of heteromeric ASIC1a/3 channels by zinc was pH dependent, as zinc shifted the pH dependence of ASIC1a/3 currents from a pH50 of 6.54 to 6.77; whereas the inhibition of ASIC1a/3 currents by zinc was also pH dependent. Furthermore, we systematically mutated histidine residues in the extracellular domain of ASIC1a or ASIC3 and found that histidine residues 72 and 73 in both ASIC1a and ASIC3, and histidine residue 83 in the ASIC3 were responsible for bidirectional effects on heteromeric ASIC1a/3 channels by zinc. These findings suggest that histidine residues in the extracellular domain of heteromeric ASIC1a/3 channels are critical for zinc-mediated effects.
机译:酸感测离子通道(ASIC)亚基1a和3分别在中央和外周感觉神经元中高度表达。内源性生物分子锌在生理和病理生理病症中起着关键作用。在这里,我们发现,通过具有双重效应的锌调节从异常表达的ASIC1A / 3通道记录的电流。锌剂量依赖性增强的峰值幅度和异统均匀的持续组分的共施加;用3至100μm的锌的预处理施加与共同施用相同的增强。然而,当锌浓度超过250μm时,用锌的预处理诱导了异统ASIC1a / 3通道的显着抑制。通过锌通过锌依赖于pH值的异聚ASIC1a / 3通道的增强,因为锌从6.54至6.77的pH50移位的pH依赖性ASIC1a / 3电流;虽然锌的抑制Asic1a / 3电流也是pH依赖性的。此外,我们在ASIC1A或ASIC3的细胞外结构域中系统地突变了组氨酸残留物,发现ASIC1A和ASIC3中的组氨酸残基72和73和ASIC3中的组氨酸残基83负责通过锌对异聚ASIC1a / 3通道的双向作用。这些发现表明,异统ASIC1a / 3通道的细胞外结构域中的组氨酸残基对锌介导的效果至关重要。

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