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对A 型钾通道Kv4.2上两个不同位点进行小泛素样修饰(SUMOylation)可增加其表面表达并降低电流幅度。

SUMOylating Two Distinct Sites on the A-type Potassium Channel, Kv4.2, Increases Surface Expression and Decreases Current Amplitude.

作者信息

Welch Meghyn A, Forster Lori A, Atlas Selin I, Baro Deborah J

机构信息

Department of Biology, Georgia State University, Atlanta, GA, United States.

Neuroscience Institute, Georgia State University, Atlanta, GA, United States.

出版信息

Front Mol Neurosci. 2019 May 31;12:144. doi: 10.3389/fnmol.2019.00144. eCollection 2019.

Abstract

Post-translational conjugation of Small Ubiquitin-like Modifier (SUMO) peptides to lysine (K) residues on target proteins alters their interactions. SUMOylation of a target protein can either promote its interaction with other proteins that possess SUMO binding domains, or it can prevent target protein interactions that normally occur in the absence of SUMOylation. One subclass of voltage-gated potassium channels that mediates an A-type current, I, exists as a ternary complex comprising Kv4 pore-forming subunits, Kv channel interacting proteins (KChIP) and transmembrane dipeptidyl peptidase like proteins (DPPL). SUMOylation could potentially regulate intra- and/or intermolecular interactions within the complex. This study began to test this hypothesis and showed that Kv4.2 channels were SUMOylated in the rat brain and in human embryonic kidney (HEK) cells expressing a GFP-tagged mouse Kv4.2 channel (Kv4.2g). Prediction software identified two putative SUMOylation sites in the Kv4.2 C-terminus at K437 and K579. These sites were conserved across mouse, rat, and human Kv4.2 channels and across mouse Kv4 isoforms. Increasing Kv4.2g SUMOylation at each site by ~30% produced a significant ~22%-50% decrease in I G, and a ~70%-95% increase in channel surface expression. Site-directed mutagenesis of Kv4.2g showed that K437 SUMOylation regulated channel surface expression, while K579 SUMOylation controlled I G. The K579R mutation mimicked and occluded the SUMOylation-mediated decrease in I G, suggesting that SUMOylation at K579 blocked an intra- or inter-protein interaction involving K579. The K437R mutation did not obviously alter channel surface expression or biophysical properties, but it did block the SUMOylation-mediated increase in channel surface expression. Interestingly, enhancing K437 SUMOylation in the K579R mutant roughly doubled channel surface expression, but produced no change in I G, suggesting that the newly inserted channels were electrically silent. This is the first report that Kv4.2 channels are SUMOylated and that SUMOylation can independently regulate Kv4.2 surface expression and I G in opposing directions. The next step will be to determine if/how SUMOylation affects Kv4 interactions within the ternary complex.

摘要

小泛素样修饰物(SUMO)肽与靶蛋白上的赖氨酸(K)残基进行翻译后缀合会改变它们之间的相互作用。靶蛋白的SUMO化修饰既可以促进其与具有SUMO结合结构域的其他蛋白的相互作用,也可以阻止在没有SUMO化修饰时正常发生的靶蛋白相互作用。介导A型电流(I)的电压门控钾通道的一个亚类以三元复合物的形式存在,该复合物由Kv4孔形成亚基、Kv通道相互作用蛋白(KChIP)和跨膜二肽基肽酶样蛋白(DPPL)组成。SUMO化修饰可能会调节该复合物内的分子内和/或分子间相互作用。本研究开始对这一假设进行验证,并表明在大鼠脑和表达绿色荧光蛋白标记的小鼠Kv4.2通道(Kv4.2g)的人胚肾(HEK)细胞中,Kv4.2通道发生了SUMO化修饰。预测软件在Kv4.2的C末端的K437和K579处鉴定出两个假定的SUMO化修饰位点。这些位点在小鼠、大鼠和人类的Kv4.2通道以及小鼠Kv4亚型中都是保守的。将每个位点的Kv4.2g的SUMO化修饰水平提高约30%,会使I G显著降低约22%-50%,通道表面表达增加约70%-95%。对Kv4.2g进行定点诱变表明,K437的SUMO化修饰调节通道表面表达,而K579的SUMO化修饰控制I G。K579R突变模拟并消除了SUMO化修饰介导的I G降低,这表明K579处的SUMO化修饰阻断了涉及K579的分子内或分子间相互作用。K437R突变没有明显改变通道表面表达或生物物理特性,但它确实阻断了SUMO化修饰介导的通道表面表达增加。有趣的是,在K579R突变体中增强K437的SUMO化修饰使通道表面表达大致增加了一倍,但I G没有变化,这表明新插入的通道是电沉默的。这是关于Kv4.2通道发生SUMO化修饰以及SUMO化修饰可以独立地以相反方向调节Kv4.2表面表达和I G的首次报道。下一步将是确定SUMO化修饰是否/如何影响三元复合物内的Kv4相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b417/6554448/05606afdf07d/fnmol-12-00144-g0001.jpg

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