Abstract

Cardiac hypertrophy (CH) is a common disease that originates from long‐term heart pressure overload and finally leads to heart failure. Recently, long non‐coding RNAs (lncRNAs) have attracted attention because they have broad and crucial functions in regulating complex biological processes. Some studies had found that lncRNAs play vital roles in complex cardiovascular diseases. However, the function and mechanism of lncRNAs in CH have not been elucidated. In our study, to investigate the potential roles of lncRNAs in CH, the Cardiac Hypertrophy‐associated LncRNAs‐Protein coding genes Network (CHLPN) was constructed by integrating gene microarray re‐annotation and subpathway enrichment analyses. After performing random walking with restart in CHLPN, we predicted 21 significant risk lncRNAs, of which 7 (Kis2, 1700110K17Rik, Gm17501, E330017L17Rik, C630043F03Rik, Gm9866 and Ube4bos1) formed a close module with their co‐expressed protein‐coding genes (PCGs). We found that the module might play crucial roles in the development of CH. In particular, 44 PCGs that were co‐expressed with six lncRNAs were enriched in CH‐related biological processes and pathways. We also found that some lncRNAs participated in the competitive endogenous RNA cross‐talk that might be involved in CH. These results indicate that the functional lncRNAs are related to post‐transcriptional regulation and could shed light on a new molecular diagnostic target of CH.

Highlights

  • Cardiac hypertrophy (CH) is compensation for heart pressure overload, which is often related to chronic disease such as hypertension

  • We converted human orthologous protein-coding genes (PCGs) into mice using Ensembl Biomart tools. They were mapped to Cardiac Hypertrophy-associated lncRNAs-PCGs Network (CHLPN), as seed nodes for random walking with restart (RWR) to prioritize long non-coding RNAs (lncRNAs) related to CH

  • Seven risk lncRNAs of CH were obtained using the RWR method with known PCGs of cardiac disease acting as seed nodes and formed a close module with their co-expressed PCGs

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Summary

Introduction

Cardiac hypertrophy (CH) is compensation for heart pressure overload, which is often related to chronic disease such as hypertension. Ca2+ plays a crucial role in the strictly regulated supply of ATP to meet the energy requirements of the cardiac myofibrils [4]. LncRNAs encompass >200 nucleotides, with little or no protein-coding ability, and are less conserved compared with the protein-coding genes (PCGs)[6, 7]. Their expression pattern in multicellular organisms shows high tissue specificity [8,9,10,11]. Many heart disease-associated lncRNAs have been found in cDNA sequence analysis of humans and a 2017 The Authors

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