Department of Medicine, Division of Cardiology, Cardiovascular Research Center, Rhode Island Hospital, The Warren Alpert Medical School of Brown University, Providence, Rhode Island 02903.
Department of Medicine, University of Minnesota, Cardiovascular Division, Minneapolis, Minnesota 55455.
J Biol Chem. 2019 Jan 4;294(1):351-360. doi: 10.1074/jbc.RA118.003852. Epub 2018 Nov 6.
The QT interval is an important diagnostic feature on surface electrocardiograms because it reflects the duration of the ventricular action potential. A previous genome-wide association study has reported a significant linkage between a single-nucleotide polymorphism ∼11.7 kb downstream of the gene encoding the RING finger ubiquitin ligase rififylin (RFFL) and variability in the QT interval. This, along with results in animal studies, suggests that RFFL may have effects on cardiac repolarization. Here, we sought to determine the role of RFFL in cardiac electrophysiology. Adult rabbit cardiomyocytes with adenovirus-expressed RFFL exhibited reduced rapid delayed rectifier current (). Neonatal rabbit cardiomyocytes transduced with RFFL-expressing adenovirus exhibited reduced total expression of the potassium channel ether-a-go-go-related gene (rbERG). Using transfections of 293A cells and Western blotting experiments, we observed that RFFL and the core-glycosylated form of the human ether-a-go-go-related gene (hERG) potassium channel interact. Furthermore, RFFL overexpression led to increased polyubiquitination and proteasomal degradation of hERG protein and to an almost complete disappearance of , which depended on the intact RING domain of RFFL. Blocking the ER-associated degradation (ERAD) pathway with a dominant-negative form of the ERAD core component, valosin-containing protein (VCP), in 293A cells partially abolished RFFL-mediated hERG degradation. We further substantiated the link between RFFL and ERAD by showing an interaction between RFFL and VCP We conclude that RFFL is an important regulator of voltage-gated hERG potassium channel activity and therefore cardiac repolarization and that this ubiquitination-mediated regulation requires parts of the ERAD pathway.
QT 间期是体表心电图的一个重要诊断特征,因为它反映了心室动作电位的持续时间。先前的全基因组关联研究报告称,编码 RING 指泛素连接酶 rififylin (RFFL) 的基因下游约 11.7kb 处的单核苷酸多态性与 QT 间期的变异性之间存在显著的连锁关系。这一点,再加上动物研究的结果,表明 RFFL 可能对心脏复极化有影响。在这里,我们试图确定 RFFL 在心脏电生理学中的作用。用腺病毒表达 RFFL 的成年兔心肌细胞表现出快速延迟整流电流 () 的减少。用表达 RFFL 的腺病毒转导的新生兔心肌细胞表现出钾通道 ether-a-go-go-related 基因 (rbERG) 的总表达减少。通过 293A 细胞的转染和 Western blot 实验,我们观察到 RFFL 和人 ether-a-go-go-related 基因 (hERG) 钾通道的核心糖基化形式相互作用。此外,RFFL 的过表达导致 hERG 蛋白的多泛素化和蛋白酶体降解增加,导致几乎完全消失 ,这取决于 RFFL 的完整 RING 结构域。用 293A 细胞中的 ER 相关降解 (ERAD) 途径的显性负形式,即包含缬氨酸的蛋白 (VCP),阻断 ERAD 途径,可部分消除 RFFL 介导的 hERG 降解。我们通过显示 RFFL 与 VCP 之间的相互作用进一步证实了 RFFL 与 ERAD 之间的联系。我们的结论是,RFFL 是电压门控 hERG 钾通道活性的重要调节剂,因此也是心脏复极的调节剂,这种泛素化调节需要部分 ERAD 途径。