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β4-Subunit increases Slo responsiveness to physiological Ca2+ concentrations and together with β1 reduces surface expression of Slo in hair cells

机译:β4-亚基增加Slo对生理性Ca2 +浓度的响应性并与β1一起降低Slo在毛细胞中的表面表达

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摘要

Changing kinetics of large-conductance potassium (BK) channels in hair cells of nonmammalian vertebrates, including the chick, plays a critical role in electrical tuning, a mechanism used by these cells to discriminate between different frequencies of sound. BK currents are less abundant in low-frequency hair cells and show large openings in response to a rise in intracellular Ca2+ at a hair cell's operating voltage range (spanning −40 to −60 mV). Although the molecular underpinnings of its function in hair cells are poorly understood, it is established that BK channels consist of a pore-forming α-subunit (Slo) and a number of accessory subunits. Currents from the α (Slo)-subunit alone do not show dramatic increases in response to changes in Ca2+ concentrations at −50 mV. We have cloned the chick β4- and β1-subunits and show that these subunits are preferentially expressed in low-frequency hair cells, where they decrease Slo surface expression. The β4-subunit in particular is responsible for the BK channel's increased responsiveness to Ca2+ at a hair cell's operating voltage. In contrast, however, the increases in relaxation times induced by both β-subunits suggest additional mechanisms responsible for BK channel function in hair cells.
机译:非哺乳动物脊椎动物(包括雏鸡)的毛细胞中大电导钾通道的动力学变化在电调节中起着至关重要的作用,电调节是这些细胞用来区分不同声音频率的一种机制。在低频毛细胞中,BK电流不那么丰富,并且在毛细胞的工作电压范围(跨度-40至-60 mV)下,响应于细胞内Ca 2 + 的升高而显示出较大的开口。尽管对其在毛细胞中功能的分子基础了解甚少,但已确定BK通道由成孔的α亚基(Slo)和许多辅助亚基组成。单独的α(Slo)亚基的电流在-50 mV下对Ca 2 + 浓度的变化没有明显的增加。我们已经克隆了雏鸡的β4-和β1-亚基,并表明这些亚基在低频毛细胞中优先表达,从而降低Slo表面表达。在毛细胞的工作电压下,β4-亚基特别负责BK通道对Ca 2 + 的响应性增强。然而,相反,由两个β亚基诱导的弛豫时间的增加表明负责毛细胞中BK通道功能的其他机制。

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