Frontiers in Cardiovascular Medicine (Jan 2023)

lncRNA LOC100911717-targeting GAP43-mediated sympathetic remodeling after myocardial infarction in rats

  • Pingjiang Li,
  • Pingjiang Li,
  • Kang Wang,
  • Jie Yin,
  • Lei Qi,
  • Lei Qi,
  • Hesheng Hu,
  • Peijin Yang,
  • Peijin Yang,
  • Yugen Shi,
  • Yan Li,
  • Meng Feng,
  • Meng Feng,
  • Hangji Lyu,
  • Hangji Lyu,
  • Weili Ge,
  • Xiaolu Li,
  • Suhua Yan

DOI
https://doi.org/10.3389/fcvm.2022.1019435
Journal volume & issue
Vol. 9

Abstract

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ObjectiveSympathetic remodeling after myocardial infarction (MI) is the primary cause of ventricular arrhythmias (VAs), leading to sudden cardiac death (SCD). M1-type macrophages are closely associated with inflammation and sympathetic remodeling after MI. Long noncoding RNAs (lncRNAs) are critical for the regulation of cardiovascular disease development. Therefore, this study aimed to identify the lncRNAs involved in MI and reveal a possible regulatory mechanism.Methods and resultsM0- and M1-type macrophages were selected for sequencing and screened for differentially expressed lncRNAs. The data revealed that lncRNA LOC100911717 was upregulated in M1-type macrophages but not in M0-type macrophages. In addition, the lncRNA LOC100911717 was upregulated in heart tissues after MI. Furthermore, an RNA pull-down assay revealed that lncRNA LOC100911717 could interact with growth-associated protein 43 (GAP43). Essentially, immunofluorescence assays and programmed electrical stimulation demonstrated that GAP43 expression was suppressed and VA incidence was reduced after lncRNA LOC100911717 knockdown in rat hearts using an adeno-associated virus.ConclusionsWe observed a novel relationship between lncRNA LOC100911717 and GAP43. After MI, lncRNA LOC100911717 was upregulated and GAP43 expression was enhanced, thus increasing the extent of sympathetic remodeling and the frequency of VA events. Consequently, silencing lncRNA LOC100911717 could reduce sympathetic remodeling and VAs.

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