首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Trafficking-dependent phosphorylation of Kv1.2 regulates voltage-gated potassium channel cell surface expression
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Trafficking-dependent phosphorylation of Kv1.2 regulates voltage-gated potassium channel cell surface expression

机译:Kv1.2的贩运依赖磷酸化调节电压门控钾通道细胞表面表达

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摘要

Kv1.2 α-subunits are components of low-threshold, rapidly activating voltage-gated potassium (Kv) channels in mammalian neurons. Expression and localization of Kv channels is regulated by trafficking signals encoded in their primary structure. Kv1.2 is unique in lacking strong trafficking signals and in exhibiting dramatic cell-specific differences in trafficking, which is suggestive of conditional trafficking signals. Here we show that a cluster of cytoplasmic C-terminal phosphorylation sites regulates Kv1.2 trafficking. Using tandem MS to analyze Kv1.2 purified from rat, human, and mouse brain, we identified in each sample in vivo phosphoserine (pS) phosphorylation sites at pS434, pS440, and pS441, as well as doubly phosphorylated pS440/pS441. We also found these sites, as well as pS449, on recombinant Kv1.2 expressed in heterologous cells. We found that phosphorylation at pS440/pS441 is present only on the post-endoplasmic reticulum (ER)/cell surface pool of Kv1.2 and is not detectable on newly synthesized and ER-localized Kv1.2, on which we did observe pS449 phosphorylation. Elimination of PS440/PS441 phosphorylation by mutation reduces cell-surface expression efficiency and functional expression of homomeric Kv1.2 channels. Interestingly, mutation of S449 reduces phosphorylation at pS440/pS441 and also decreases Kv1.2 cell-surface expression efficiency and functional expression. These mutations also suppress trafficking of Kv1.2/ Kv1.4 heteromeric channels, suggesting that incorporation of Kv1.2 into heteromeric complexes confers conditional phosphory-lation-dependent trafficking to diverse Kv channel complexes. These data support Kv1.2 phosphorylation at these clustered C-terminal sites as playing an important role in regulating trafficking of Kv1.2-containing Kv channels.
机译:Kv1.2α亚基是哺乳动物神经元中低阈值,快速激活的电压门控钾(Kv)通道的组成部分。 Kv通道的表达和定位受以其主要结构编码的运输信号调节。 Kv1.2的独特之处在于缺乏强大的贩运信号,并且在贩运中表现出明显的细胞特异性差异,这暗示了有条件的贩运信号。在这里,我们显示了细胞质C末端磷酸化位点的群集调节Kv1.2贩运。使用串联质谱分析从大鼠,人类和小鼠大脑中纯化的Kv1.2,我们在每个样品中鉴定了pS434,pS440和pS441的体内磷酸丝氨酸(pS)磷酸化位点,以及双磷酸化的pS440 / pS441。我们还在异源细胞中表达的重组Kv1.2上发现了这些位点以及pS449。我们发现pS440 / pS441的磷酸化仅存在于Kv1.2的内质网(ER)/细胞表面池上,而在新合成且位于ER定位的Kv1.2上则无法检测到,我们确实观察到了pS449磷酸化。通过突变消除PS440 / PS441磷酸化会降低细胞表面表达效率和同源Kv1.2通道的功能表达。有趣的是,S449的突变减少了pS440 / pS441的磷酸化,还降低了Kv1.2细胞表面表达效率和功能表达。这些突变也抑制了Kv1.2 / Kv1.4异源通道的运输,这表明将Kv1.2掺入异源复合物中可赋予依赖磷酸化依赖的运输到各种Kv通道复合物。这些数据支持在这些聚集的C末端位点处的Kv1.2磷酸化,因为它们在调节包含Kv1.2的Kv通道的运输中起着重要作用。

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