INSERM, UMR1087, CNRS, UMR6291, LUNAM Université, Nantes, France.
J Proteome Res. 2012 Dec 7;11(12):5994-6007. doi: 10.1021/pr300702c. Epub 2012 Nov 9.
Cardiac voltage-gated Na+ (Nav) channels are key determinants of action potential waveforms, refractoriness and propagation, and Nav1.5 is the main Nav pore-forming (α) subunit in the mammalian heart. Although direct phosphorylation of the Nav1.5 protein has been suggested to modulate various aspects of Nav channel physiology and pathophysiology, native Nav1.5 phosphorylation sites have not been identified. In the experiments here, a mass spectrometry (MS)-based proteomic approach was developed to identify native Nav1.5 phosphorylation sites directly. Using an anti-NavPAN antibody, Nav channel complexes were immunoprecipitated from adult mouse cardiac ventricles. The MS analyses revealed that this antibody immunoprecipitates several Nav α subunits in addition to Nav1.5, as well as several previously identified Nav channel associated/regulatory proteins. Label-free comparative and data-driven phosphoproteomic analyses of purified cardiac Nav1.5 protein identified 11 phosphorylation sites, 8 of which are novel. All the phosphorylation sites identified except one in the N-terminus are in the first intracellular linker loop, suggesting critical roles for this region in phosphorylation-dependent cardiac Nav channel regulation. Interestingly, commonly used prediction algorithms did not reliably predict these newly identified in situ phosphorylation sites. Taken together, the results presented provide the first in situ map of basal phosphorylation sites on the mouse cardiac Nav1.5 α subunit.
心脏电压门控钠离子 (Nav) 通道是动作电位波形、不应期和传播的关键决定因素,Nav1.5 是哺乳动物心脏中主要的 Nav 孔形成 (α) 亚基。尽管已经提出 Nav1.5 蛋白的直接磷酸化可调节 Nav 通道生理学和病理生理学的各个方面,但尚未鉴定出天然 Nav1.5 磷酸化位点。在本实验中,开发了一种基于质谱 (MS) 的蛋白质组学方法来直接鉴定天然 Nav1.5 磷酸化位点。使用抗 NavPAN 抗体从成年小鼠心脏心室中免疫沉淀 Nav 通道复合物。MS 分析表明,该抗体除了 Nav1.5 外,还可免疫沉淀几种 Nav α 亚基以及几种先前鉴定的 Nav 通道相关/调节蛋白。对纯化的心脏 Nav1.5 蛋白进行无标记比较和数据驱动的磷酸化蛋白质组学分析,鉴定出 11 个磷酸化位点,其中 8 个是新的。除了 N 端的一个以外,鉴定出的所有磷酸化位点都位于第一个细胞内连接环中,这表明该区域在磷酸化依赖性心脏 Nav 通道调节中起关键作用。有趣的是,常用的预测算法不能可靠地预测这些新鉴定的原位磷酸化位点。总之,所呈现的结果提供了关于小鼠心脏 Nav1.5 α 亚基的基础磷酸化位点的第一个原位图谱。