Metabolic remodeling and calcium handling abnormality in induced pluripotent stem cell-derived cardiomyocytes in dilated phase of hypertrophic cardiomyopathy with MYBPC3 frameshift mutation

被引:0
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作者
Haruka Mori
Dongzhu Xu
Yuzuno Shimoda
Zixun Yuan
Yoshiko Murakata
Binyang Xi
Kimi Sato
Masayoshi Yamamoto
Kazuko Tajiri
Tomoko Ishizu
Masaki Ieda
Nobuyuki Murakoshi
机构
[1] University of Tsukuba,Department of Cardiology, Faculty of Medicine
[2] University of Tsukuba,Master’s Program in Medical Sciences
[3] National Cancer Center Hospital East,Department of Cardiology
[4] Keio University School of Medicine,Department of Cardiology
关键词
Dilated phase of hypertrophic cardiomyopathy; Induced pluripotent stem cells; Myosin binding protein C; Cardiomyocytes; Energy metabolism;
D O I
10.1038/s41598-024-62530-0
中图分类号
学科分类号
摘要
Hypertrophic cardiomyopathy (HCM) is an inherited disorder characterized by left ventricular hypertrophy and diastolic dysfunction, and increases the risk of arrhythmias and heart failure. Some patients with HCM develop a dilated phase of hypertrophic cardiomyopathy (D-HCM) and have poor prognosis; however, its pathogenesis is unclear and few pathological models exist. This study established disease-specific human induced pluripotent stem cells (iPSCs) from a patient with D-HCM harboring a mutation in MYBPC3 (c.1377delC), a common causative gene of HCM, and investigated the associated pathophysiological mechanisms using disease-specific iPSC-derived cardiomyocytes (iPSC-CMs). We confirmed the expression of pluripotent markers and the ability to differentiate into three germ layers in D-HCM patient-derived iPSCs (D-HCM iPSCs). D-HCM iPSC-CMs exhibited disrupted myocardial sarcomere structures and an increased number of damaged mitochondria. Ca2+ imaging showed increased abnormal Ca2+ signaling and prolonged decay time in D-HCM iPSC-CMs. Cell metabolic analysis revealed increased basal respiration, maximal respiration, and spare-respiratory capacity in D-HCM iPSC-CMs. RNA sequencing also showed an increased expression of mitochondrial electron transport system-related genes. D-HCM iPSC-CMs showed abnormal Ca2+ handling and hypermetabolic state, similar to that previously reported for HCM patient-derived iPSC-CMs. Although further studies are required, this is expected to be a useful pathological model for D-HCM.
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