首页> 美国卫生研究院文献>The Journal of Biological Chemistry >S-Acylation controls functional coupling of BK channel pore-forming α-subunits and β1-subunits
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S-Acylation controls functional coupling of BK channel pore-forming α-subunits and β1-subunits

机译:S-酰化作用控制BK通道形成孔的α-亚基和β1-亚基的功能偶联

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摘要

The properties and physiological function of pore-forming α-subunits of large conductance calcium- and voltage-activated potassium (BK) channels are potently modified by their functional coupling with regulatory subunits in many tissues. However, mechanisms that might control functional coupling are very poorly understood. Here we show that S-acylation, a dynamic post-translational lipid modification of proteins, of the intracellular S0–S1 loop of the BK channel pore-forming α-subunit controls functional coupling to regulatory β1-subunits. In HEK293 cells, α-subunits that cannot be S-acylated show attenuated cell surface expression, but expression was restored by co-expression with the β1-subunit. However, we also found that nonacylation of the S0–S1 loop reduces functional coupling between α- and β1-subunits by attenuating the β1-subunit-induced left shift in the voltage for half-maximal activation. In mouse vascular smooth muscle cells expressing both α- and β1-subunits, BK channel α-subunits were endogenously S-acylated. We further noted that S-acylation is significantly reduced in mice with a genetic deletion of the palmitoyl acyltransferase (Zdhhc23) that controls S-acylation of the S0–S1 loop. Genetic deletion of Zdhhc23 or broad-spectrum pharmacological inhibition of S-acylation attenuated endogenous BK channel currents independently of changes in cell surface expression of the α-subunit. We conclude that functional effects of S-acylation on BK channels depend on the presence of β1-subunits. In the absence of β1-subunits, S-acylation promotes cell surface expression, whereas in its presence, S-acylation controls functional coupling. S-Acylation thus provides a mechanism that dynamically regulates the functional coupling with β1-subunits, enabling an additional level of conditional, cell-specific control of ion-channel physiology.
机译:大电导钙和电压激活的钾(BK)通道的成孔性α亚基的特性和生理功能通过与许多组织中的调节亚基功能偶联而得到有效修饰。但是,可能控制功能耦合的机制了解得很少。在这里,我们显示了BK通道孔形成α-亚基的细胞内S0-S1环的S-酰化作用(一种蛋白质的动态翻译后脂质修饰)控制着功能性与调节性β1-亚基的偶联。在HEK293细胞中,不能被S-酰化的α-亚基显示减弱的细胞表面表达,但是通过与β1-亚基的共表达来恢复表达。但是,我们还发现,S0–S1环的非酰化作用通过减弱β1亚基引起的电压的最大左移,从而减弱了α亚基和β1亚基之间的功能耦合。在同时表达α-和β1-亚基的小鼠血管平滑肌细胞中,BK通道α-亚基被内源性S-酰化。我们进一步注意到,通过控制S0–S1环的S-酰化的棕榈酰酰基转移酶(Zdhhc23)的基因缺失,小鼠的S-酰化作用显着降低。 Zdhhc23的基因缺失或S酰化的广谱药理学抑制作用减弱了内源性BK通道电流,而与α亚基细胞表面表达的变化无关。我们得出结论,S-酰化对BK通道的功能作用取决于β1-亚基的存在。在没有β1-亚基的情况下,S-酰化促进细胞表面表达,而在其存在下,S-酰化控制功能偶联。因此,S-酰化作用提供了一种机制,可动态调节与β1-亚基的功能偶联,从而实现对离子通道生理学的条件性,细胞特异性控制的附加水平。

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