BACKGROUND: Calmodulinopathies are rare inherited arrhythmia syndromes caused by dominant heterozygous variants in CALM1, CALM2, or CALM3, which each encode the identical CaM (calmodulin) protein. We hypothesized that antisense oligonucleotide (ASO)-mediated depletion of an affected calmodulin gene would ameliorate disease manifestations, whereas the other 2 calmodulin genes would preserve CaM level and function. METHODS: We tested this hypothesis using human induced pluripotent stem cell-derived cardiomyocyte and mouse models of CALM1 pathogenic variants. RESULTS: Human CALM1(F142L/+) induced pluripotent stem cell-derived cardiomyocytes exhibited prolonged action potentials, modeling congenital long QT syndrome. CALM1 knockout or CALM1-depleting ASOs did not alter CaM protein level and normalized repolarization duration of CALM1(F142L/+) induced pluripotent stem cell-derived cardiomyocytes. Similarly, an ASO targeting murine Calm1 depleted Calm1 transcript without affecting CaM protein level. This ASO alleviated drug-induced bidirectional ventricular tachycardia in Calm1(N98S/+) mice without a deleterious effect on cardiac electrical or contractile function. CONCLUSIONS: These results provide proof of concept that ASOs targeting individual calmodulin genes are potentially effective and safe therapies for calmodulinopathies.
Antisense Oligonucleotide Therapy for Calmodulinopathy.
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作者:Bortolin Raul H, Nawar Farina, Park Chaehyoung, Trembley Michael A, Prondzynski Maksymilian, Sweat Mason E, Wang Peizhe, Chen Jiehui, Lu Fujian, Liou Carter, Berkson Paul, Keating Erin M, Yoshinaga Daisuke, Pavlaki Nikoleta, Samenuk Thomas, Cavazzoni Cecilia B, Sage Peter T, Ma Qing, Whitehill Robert D, Abrams Dominic J, Carreon Chrystalle Katte, Putra Juan, Alexandrescu Sanda, Guo Shuai, Tsai Wen-Chin, Rubart Michael, Kubli Dieter A, Mullick Adam E, Bezzerides Vassilios J, Pu William T
| 期刊: | Circulation | 影响因子: | 38.600 |
| 时间: | 2024 | 起止号: | 2024 Oct 8; 150(15):1199-1210 |
| doi: | 10.1161/CIRCULATIONAHA.123.068111 | ||
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