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αB-Crystallin Interacts with Nav1.5 and Regulates Ubiquitination and Internalization of Cell Surface Nav1.5

机译:αB-晶体蛋白与Nav1.5相互作用并调节泛素化和细胞表面Nav1.5的内在化

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摘要

Nav1.5, the pore-forming α subunit of the cardiac voltage-gated Na+ channel complex, is required for the initiation and propagation of the cardiac action potential. Mutations in Nav1.5 cause cardiac arrhythmias and sudden death. The cardiac Na+ channel functions as a protein complex; however, its complete components remain to be fully elucidated. A yeast two-hybrid screen identified a new candidate Nav1.5-interacting protein, αB-crystallin. GST pull-down, co-immunoprecipitation, and immunostaining analyses validated the interaction between Nav1.5 and αB-crystallin. Whole-cell patch clamping showed that overexpression of αB-crystallin significantly increased peak sodium current (INa) density, and the underlying molecular mechanism is the increased cell surface expression level of Nav1.5 via reduced internalization of cell surface Nav1.5 and ubiquitination of Nav1.5. Knock-out of αB-crystallin expression significantly decreased the cell surface expression level of Nav1.5. Co-immunoprecipitation analysis showed that αB-crystallin interacted with Nedd4-2; however, a catalytically inactive Nedd4-2-C801S mutant impaired the interaction and abolished the up-regulation of INa by αB-crystallin. Nav1.5 mutation V1980A at the interaction site for Nedd4-2 eliminated the effect of αB-crystallin on reduction of Nav1.5 ubiquitination and increases of INa density. Two disease-causing mutations in αB-crystallin, R109H and R151X (nonsense mutation), eliminated the effect of αB-crystallin on INa. This study identifies αB-crystallin as a new binding partner for Nav1.5. αB-Crystallin interacts with Nav1.5 and increases INa by modulating the expression level and internalization of cell surface Nav1.5 and ubiquitination of Nav1.5, which requires the protein-protein interactions between αB-crystallin and Nav1.5 and between αB-crystallin and functionally active Nedd4-2.
机译:Nav1.5是心脏电压门控Na + 通道复合物的成孔α亚基,是心脏动作电位的起始和传播所必需的。 Nav1.5中的突变会导致心律不齐和猝死。心脏的Na + 通道起着蛋白质复合物的作用。但是,其完整组件仍有待充分阐明。酵母双杂交筛选确定了新的候选Nav1.5相互作用蛋白αB-crystallin。 GST下拉,免疫共沉淀和免疫染色分析验证了Nav1.5和αB-crystallin之间的相互作用。全细胞膜片钳显示,αB-晶状蛋白的过度表达显着增加了峰值钠电流(INa)密度,而潜在的分子机制是通过减少细胞表面Nav1.5的内在化和泛素化来增加Nav1.5的细胞表面表达水平。 Nav1.5。剔除αB-晶状体蛋白表达明显降低了Nav1.5的细胞表面表达水平。免疫共沉淀分析表明,αB-晶状体蛋白与Nedd4-2相互作用。然而,催化失活的Nedd4-2-C801S突变体削弱了相互作用,并消除了αB-晶状蛋白对INa的上调。 Nedd4-2相互作用位点处的Nav1.5突变V1980A消除了αB-晶状体蛋白对Nav1.5泛素化减少和INa密度增加的影响。 αB-晶状蛋白的两个致病突变,R109H和R151X(无意义突变)消除了αB-晶状蛋白对INa的影响。这项研究确定了αB-crystallin是Nav1.5的新结合伴侣。 αB-晶体蛋白与Nav1.5相互作用并通过调节细胞表面Na v 1.5的表达水平和内在化以及Na v Na > 1.5,这要求αB-晶状体蛋白与Na v 1.5之间以及αB-晶状体蛋白与功能性Nedd4-2之间存在蛋白质-蛋白质相互作用。

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