Long noncoding RNA HSCHARME is altered in human cardiomyopathies and promotes stem cell-derived cardiomyocyte differentiation by splicing regulation.
Buonaiuto, G.; Desideri, F.; Setti, A.; Palma, A.; D'Angelo, A.; Storari, G.; Santini, T.; Laneve, P.; Trisciuoglio, D.; Ballarino, M.
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A growing body of evidence suggests that tissue-specific long noncoding RNAs (lncRNA) play pivotal roles in the heart. Here, we exploited the synteny between the mouse and human genomes to identify the novel lncRNA HSCHARME (Human Syntenic CHARME) and combined single-cell transcriptomics, CAGE-seq data, RNA-FISH imaging and CRISPR-Cas9 genome editing to document its role in cardiomyogenesis. By investigating the mechanism of action of HSCHARME in hiPSC-derived cardiomyocytes, we found that the locus produces the major pCHARME isoform that associates with SC35-containing speckles and interacts with the splicing regulator PTBP1. Consistently, the functional inactivation of pCHARME influences the splicing of cardiac-specific pre-mRNAs and impacts their expression, which parallels a decline in cardiomyocyte differentiation and physiology. In line with a possible association with disease, large-scale analysis of the lncRNA expression across cardiomyopathy patients revealed increased levels of pCHARME in hypertrophic (HCM) and dilated (DCM) hearts and identified a subset of disease-associated targets whose expression can be modulated through HSCHARME dosage. By unlocking mechanistic insights into the role of pCHARME in cardiac cells, our data identify a novel non-coding regulator of cardiomyocyte function with potential implications in disease.
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