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Targeting the highly abundant circular RNA circSlc8a1 in cardiomyocytes attenuates pressure overload induced hypertrophy.
Lim, Tingsen Benson; Aliwarga, Edita; Luu, Tuan Danh Anh; Li, Yiqing Peter; Ng, Shi Ling; Annadoray, Lavenniah; Sian, Stephanie; Ackers-Johnson, Matthew Andrew; Foo, Roger Sik-Yin.
Afiliación
  • Lim TB; Cardiovascular Research Institute, National University Health Systems, MD6 Centre for Translational Medicine, 14 Medical Drive, Singapore, Singapore.
  • Aliwarga E; Genome Institute of Singapore, Genome, 60 Biopolis Street, Singapore, Singapore.
  • Luu TDA; Cardiovascular Research Institute, National University Health Systems, MD6 Centre for Translational Medicine, 14 Medical Drive, Singapore, Singapore.
  • Li YP; Genome Institute of Singapore, Genome, 60 Biopolis Street, Singapore, Singapore.
  • Ng SL; Cardiovascular Research Institute, National University Health Systems, MD6 Centre for Translational Medicine, 14 Medical Drive, Singapore, Singapore.
  • Annadoray L; Cardiovascular Research Institute, National University Health Systems, MD6 Centre for Translational Medicine, 14 Medical Drive, Singapore, Singapore.
  • Sian S; Cardiovascular Research Institute, National University Health Systems, MD6 Centre for Translational Medicine, 14 Medical Drive, Singapore, Singapore.
  • Ackers-Johnson MA; Genome Institute of Singapore, Genome, 60 Biopolis Street, Singapore, Singapore.
  • Foo RS; Cardiovascular Research Institute, National University Health Systems, MD6 Centre for Translational Medicine, 14 Medical Drive, Singapore, Singapore.
Cardiovasc Res ; 115(14): 1998-2007, 2019 Dec 01.
Article en En | MEDLINE | ID: mdl-31114845
AIMS: We and others have previously described the expression landscape of circular RNA (circRNA) in mouse and human hearts. However, the functional relevance of many of these abundantly expressed cardiomyocyte circRNA remains to be fully explored. Among the most abundant circRNA, one stems from the sodium-calcium exchanger gene, Slc8a1, exon 2 locus. Because of its very high abundance in cardiomyocytes we investigated the possible role of circSlc8a1 in the heart. METHODS AND RESULTS: We performed a miRNA screen using an array of 752 miRNAs with RNA recovered from a pull-down of endogenous cardiomyocyte circSlc8a1. MicroRNA-133a (miR-133a), with a prior well-recognized role in cardiac hypertrophy, was highly enriched in the fraction of circSlc8a1 pull-down (adjusted P-value < 0.001). We, therefore, followed-up validation of the functional interaction between circSlc8a1 and miR-133 using luciferase assays and reciprocal pull-down assays. In vivo, AAV9-mediated RNAi knockdown of circSlc8a1 attenuates cardiac hypertrophy from pressure-overload, whereas forced cardiomyocyte specific overexpression of circSlc8a1 resulted in heart failure. Molecular analyses showed targets of miR-133a including serum response factor (Srf), connective tissue growth factor (Ctgf), adrenoceptor beta 1 (Adrb1), and adenylate cyclase 6 (Adcy6) to be regulated by circSlc8a1-directed intervention of knockdown and overexpression. CONCLUSION: In summary, circSlc8a1 can function as an endogenous sponge for miR-133a in cardiomyocytes. We propose that circSlc8a1 may serve as a novel therapeutic target for cardiac hypertrophy.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Cardiomegalia / Intercambiador de Sodio-Calcio / Miocitos Cardíacos / MicroARNs / ARN Circular / Insuficiencia Cardíaca Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: Cardiovasc Res Año: 2019 Tipo del documento: Article País de afiliación: Singapur

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Cardiomegalia / Intercambiador de Sodio-Calcio / Miocitos Cardíacos / MicroARNs / ARN Circular / Insuficiencia Cardíaca Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: Cardiovasc Res Año: 2019 Tipo del documento: Article País de afiliación: Singapur