Arrhythmia-associated calmodulin variants interact with KCNQ1 to confer aberrant membrane trafficking and function

被引:1
|
作者
Kang, Po wei [1 ]
Woodbury, Lucy [1 ]
Angsutararux, Paweorn [1 ]
Sambare, Namit [1 ]
Shi, Jingyi [1 ]
Marras, Martina [1 ]
Abella, Carlota [1 ]
Bedi, Anish [1 ]
Zinn, DeShawn [1 ]
Cui, Jianmin [1 ]
Silva, Jonathan R. [1 ]
机构
[1] Washington Univ St Louis, Dept Biomed Engn, St Louis, MO 63130 USA
来源
PNAS NEXUS | 2023年 / 2卷 / 11期
基金
美国国家卫生研究院;
关键词
KCNQ1; K(V)7.1; calmodulin; calmodulinopathy; ion channels; arrhythmia; LONG-QT SYNDROME; I-KS; MACROMOLECULAR INTERACTIONS; VENTRICULAR-TACHYCARDIA; STRUCTURAL BASIS; MUTATIONS; CHANNELS; FRET; K(V)LQT1; PROTEINS;
D O I
10.1093/pnasnexus/pgad335
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Missense variants in calmodulin (CaM) predispose patients to arrhythmias associated with high mortality rates ("calmodulinopathy"). As CaM regulates many key cardiac ion channels, an understanding of disease mechanism associated with CaM variant arrhythmias requires elucidating individual CaM variant effects on distinct channels. One key CaM regulatory target is the KCNQ1 (K(V)7.1) voltage-gated potassium channel that carries the I-Ks current. Yet, relatively little is known as to how CaM variants interact with KCNQ1 or affect its function. Here, we take a multipronged approach employing a live-cell fluorescence resonance energy transfer binding assay, fluorescence trafficking assay, and functional electrophysiology to characterize >10 arrhythmia-associated CaM variants for effect on KCNQ1 CaM binding, membrane trafficking, and channel function. We identify one variant (G114W) that exhibits severely weakened binding to KCNQ1 but find that most other CaM variants interact with similar binding affinity to KCNQ1 when compared with CaM wild-type over physiological Ca2+ ranges. We further identify several CaM variants that affect KCNQ1 and I-Ks membrane trafficking and/or baseline current activation kinetics, thereby delineating KCNQ1 dysfunction in calmodulinopathy. Lastly, we identify CaM variants with no effect on KCNQ1 function. This study provides extensive functional data that reveal how CaM variants contribute to creating a proarrhythmic substrate by causing abnormal KCNQ1 membrane trafficking and current conduction. We find that CaM variant regulation of KCNQ1 is not uniform with effects varying from benign to significant loss of function, suggesting how CaM variants predispose patients to arrhythmia via the dysregulation of multiple cardiac ion channels.Classification: Biological, Health, and Medical Sciences, Physiology
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页数:16
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