Right ventricular myocardial biomarkers in human heart failure
Journal
Journal of Cardiac Failure
Journal Volume
21
Journal Issue
5
Pages
398-411
Date Issued
2015
Author(s)
Abstract
Background Right ventricular (RV) dysfunction contributes to mortality in chronic heart failure (HF). However, the molecular mechanisms of RV failure remain poorly understood, and RV myocardial biomarkers have yet to be developed. Methods and Results We performed RNA sequencing (RNA-seq) on 22 explanted human HF RVs and 5 unused donor human heart RVs (DON RV) and compared results to those recently reported from 16 explanted human LVs We used Bowtie-Tophat for transcript alignment and transcriptome assembly, DESeq for identification of differentially expressed genes (DEGs) and Ingenuity for exploration of gene ontologies. In the HF RV, RNA-seq identified 130,790 total RNA transcripts including 13,272 protein coding genes, 10,831 long non-coding RNA genes and 8,605 pseudogenes. There were 800-1000 DEGs between DON and HF RV comparison groups with differences concentrated in cytoskeletal, basement membrane, extracellular matrix (ECM), inflammatory mediator, hemostasis, membrane transport and transcription factor genes, lncRNAs and pseudogenes. In an unbiased approach, the top 10 DEGs SERPINA3, SERPINA5, LCN6, LCN10, STEAP4, AKR1C1, STAC2, SPARCL1, VSIG4 and F8 exhibited no overlap in read counts between DON and HF RVs, high sensitivities, specificities, predictive values and areas under the receiver operating characteristic curves. STEAP4, SPARCL1 and VSIG4 were differentially expressed between RVs and LVs, supporting their roles as RV-specific myocardial biomarkers. Conclusions Unbiased, comprehensive profiling of the RV transcriptome by RNA-seq suggests structural changes and abnormalities in inflammatory processes and yields specific, novel HF RV vs HF LV myocardial biomarkers not previously identified by more limited transcriptome profiling approaches. ? 2015 Elsevier Inc.
Subjects
biomarkers; Human heart failure; right ventricle; RNA-seq; transcriptome myocardial
SDGs
Other Subjects
adrenomedullin; biological marker; brain natriuretic peptide; C reactive protein; copeptin; cystatin C; cytochrome P450 1A1; endothelin 1; galectin 3; growth differentiation factor 15; long untranslated RNA; milrinone; natriuretic factor; natriuretic peptide type A; neu differentiation factor; neutrophil gelatinase associated lipocalin; procalcitonin; transcriptome; troponin I; unclassified drug; biological marker; genetic marker; RNA; adult; AKR1C1 gene; Article; clinical article; controlled study; F8 gene; female; gene expression; heart left ventricle; heart left ventricle failure; heart right ventricle failure; human; human tissue; L2F gene; LCN10 gene; LCN6 gene; male; priority journal; pseudogene; RNA gene; RNA sequence; SERPINA3 gene; SERPINA5 gene; SPARCL1 gene; STAC2 gene; STEAP4 gene; VSIG4 gene; donor; gene expression profiling; genetic marker; genetics; heart failure; heart right ventricle function; middle aged; procedures; Adult; Biomarkers; Female; Gene Expression Profiling; Genetic Markers; Heart Failure; Humans; Male; Middle Aged; RNA; Tissue Donors; Ventricular Dysfunction, Right
Type
journal article