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首页> 外文期刊>The Journal of biological chemistry >Multiple Palmitoyltransferases Are Required for Palmitoylation-dependent Regulation of Large Conductance Calcium- and Voltage-activated Potassium Channels
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Multiple Palmitoyltransferases Are Required for Palmitoylation-dependent Regulation of Large Conductance Calcium- and Voltage-activated Potassium Channels

机译:对于大型电导钙和电压激活的钾通道,棕榈酰基依赖性调节需要多种棕榈酰基转移酶

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Palmitoylation is emerging as an important and dynamic regulator of ion channel function; however, the specificity with which the large family of acyl palmitoyltransferases (zinc finger Asp-His-His-Cys type-containing acyl palmitoyltransferase (DHHCs)) control channel palmitoylation is poorly understood. We have previously demonstrated that the alternatively spliced stress-regulated exon (STREX) variant of the intracellular C-terminal domain of the large conductance calcium- and voltage-activated potassium (BK) channels is palmitoylated and targets the STREX domain to the plasma membrane. Using a combined imaging, biochemical, and functional approach coupled with loss-of-function (small interfering RNA knockdown of endogenous DHHCs) and gain-of-function (overexpression of recombinant DHHCs) assays, we demonstrate that multiple DHHCs control palmitoylation of the C terminus of STREX channels, the association of the STREX domain with the plasma membrane, and functional channel regulation. Cysteine residues 12 and 13 within the STREX insert were the only endogenously palmitoylated residues in the entire C terminus of the STREX channel. Palmitoylation of this dicysteine motif was controlled by DHHCs 3, 5, 7, 9, and 17, although DHHC17 showed the greatest specificity for this site upon overexpression of the cognate DHHC. DHHCs that palmitoylated the channel also co-assembled with the channel in co-immunoprecipitation experiments, and knockdown of any of these DHHCs blocked regulation of the channel by protein kinase A-dependent phosphorylation. Taken together our data reveal that a subset of DHHCs controls STREX palmitoylation and function and suggest that DHHC17 may preferentially target cysteine-rich domains. Finally, our approach may prove useful in elucidating the specificity of DHHC palmitoylation of intracellular domains of other ion channels and transmembrane proteins.
机译:Palmitoylation正在成为离子通道功能的重要和动态调节器;然而,特异性与该大家族酰基palmitoyltransferases的(锌指天冬氨酸 - 组氨酸 - 的His-半胱氨酸酰棕榈酰(DHHCs)含有型)控制信道棕榈酰化知之甚少。我们之前已经证明,大导电钙和电压活化钾(BK)通道的细胞内C-末端结构域的可替代的剪接应力调节的外显子(STREX)变体是棕榈酰化的并且将其靶向质膜域靶向血浆膜。使用与功能丧失(内源DHHCs的小干扰RNA敲低)和功能增益(重组DHHCS的过度表达)测定的组合成像,生物化学和功能方法,我们证明了多种DHHCS对照C的棕榈酰基晶体通道的末端,晶体域与血浆膜的关联,以及功能通道调节。在Strex插入物内的半胱氨酸残基12和13是唯一的晶粒中唯一的内源棕榈酰化残基。该二丙烯酰基的棕榈酰基由DHHC 3,5,7,9和17控制,尽管DHHC17对该位点的过表达对同源DHHC的过表达显示了最大的特异性。棕榈酰胺的DHHCS的通道还与共免疫沉淀实验中的通道共组装,并通过蛋白激酶A依赖性磷酸化阻断了这些DHHC的任何敲击。我们的数据携带我们的数据表明,DHHCS的子集对Strex Palmity咖啡和功能进行了控制,并表明DHHC17可以优先靶向富含半胱氨酸的域。最后,我们的方法可以证明可用于阐明其他离子通道和跨膜蛋白的细胞内域的DHHC棕榈酰棕榈酰棕榈酰的特异性。

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