MTMR4 SNVs modulate ion channel degradation and clinical severity in congenital long QT syndrome: insights in the mechanism of action of protective modifier genes

被引:35
作者
Lee, Yee-Ki [1 ,2 ]
Sala, Luca [3 ,4 ,5 ]
Mura, Manuela [6 ,7 ,8 ]
Rocchetti, Marcella [3 ]
Pedrazzini, Matteo [4 ,5 ]
Ran, Xinru [1 ,2 ,9 ]
Mak, Timothy S. H. [10 ]
Crotti, Lia [4 ,5 ,11 ,12 ]
Sham, Pak C. [10 ,13 ,14 ]
Torre, Eleonora [3 ]
Zaza, Antonio [3 ]
Schwartz, Peter J. [4 ,5 ]
Tse, Hung-Fat [1 ,2 ,9 ,15 ]
Gnecchi, Massimiliano [6 ,7 ,8 ,16 ,17 ]
机构
[1] Univ Hong Kong, Dept Med, Cardiol Div, Hong Kong, Peoples R China
[2] Univ Hong Kong, Hong Kong Guangdong Joint Lab Stem Cell & Regener, Hong Kong, Peoples R China
[3] Univ Milano Bicocca, Dept Biotechnol & Biosci, Milan, Italy
[4] IRCCS, Ist Auxol Italiano, Ctr Cardiac Arrhythmias Genet Origin, Milan, Italy
[5] IRCCS, Ist Auxol Italiano, Lab Cardiovasc Genet, Milan, Italy
[6] Fdn IRCCS Policlin San Matteo, Lab Expt Cardiol Cell & Mol Therapy, Pavia, Italy
[7] Fdn IRCCS Policlin San Matteo, Dept Cardiothorac & Vasc Sci, Coronary Care Unit, Pavia, Italy
[8] Fdn IRCCS Policlin San Matteo, Lab Clin & Expt Cardiol, Pavia, Italy
[9] Guangzhou Inst Biomed & Hlth, Guangzhou, Peoples R China
[10] Univ Hong Kong, Dept Psychiat, Hong Kong, Peoples R China
[11] Ist Auxol Italiano, Dept Cardiovasc Neural & Metab Sci, IRCCS, San Luca Hosp, Milan, Italy
[12] Univ Milano Bicocca, Dept Med & Surg, Milan, Italy
[13] Univ Hong Kong, Li Ka Shing Fac Med, Ctr Genom Sci, Hong Kong, Peoples R China
[14] Univ Hong Kong, Li Ka Shing Fac Med, State Key Lab Cognit & Brain Sci, Hong Kong, Peoples R China
[15] Univ Hong Kong, Shenzhen Inst Res & Innovat, Hong Kong, Peoples R China
[16] Univ Pavia, Dept Mol Med, Unit Cardiol, Pavia, Italy
[17] Univ Cape Town, Dept Med, Cape Town, South Africa
关键词
Long QT syndrome; Induced pluripotent stem cells; Arrhythmias; Variants; Nedd4L; MTMR4; PLURIPOTENT STEM-CELLS; SURFACE EXPRESSION; MUTATION; ISOFORM; KCNQ1;
D O I
10.1093/cvr/cvaa019
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Aims In long QT syndrome (LQTS) patients, modifier genes modulate the arrhythmic risk associated with a disease-causing mutation. Their recognition can improve risk stratification and clinical management, but their discovery represents a challenge. We tested whether a cellular-driven approach could help to identify new modifier genes and especially their mechanism of action. Methods and results We generated human-induced pluripotent stem cell-derived cardiomyocytes (iPSC-CM) from two patients carrying the same KCNQ1-Y111C mutation, but presenting opposite clinical phenotypes. We showed that the phenotype of the iPSC-CMs derived from the symptomatic patient is due to impaired trafficking and increased degradation of the mutant KCNQ1 and wild-type human ether-a-go-go-related gene. In the iPSC-CMs of the asymptomatic (AS) patient, the activity of an E3 ubiquitin-protein ligase (Nedd4L) involved in channel protein degradation was reduced and resulted in a decreased arrhythmogenic substrate. Two single-nucleotide variants (SNVs) on the Myotubularin-related protein 4 (MTMR4) gene, an interactor of Nedd4L, were identified by whole-exome sequencing as potential contributors to decreased Nedd4L activity. Correction of these SNVs by CRISPR/Cas9 unmasked the LQTS phenotype in AS cells. Importantly, the same MTMR4 variants were present in 77% of AS Y111C mutation carriers of a separate cohort. Thus, genetically mediated interference with Nedd4L activation seems associated with protective effects. Conclusion Our finding represents the first demonstration of the cellular mechanism of action of a protective modifier gene in LQTS. It provides new clues for advanced risk stratification and paves the way for the design of new therapies targeting this specific molecular pathway.
引用
收藏
页码:767 / 779
页数:13
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