Evolutionarily conserved transcriptional landscape of the heart defining the chamber specific physiology [Evolutionär konservierte Transkriptionslandschaft des Herzens, die die kammerspezifische Physiologie bestimmt.]

Gandhi S, Witten A, De Majo F, Gilbers M, Maessen J, Schotten U, Windt LJ, Stoll M

Research article (journal) | Peer reviewed

Abstract

Cardiovascular disease (CVD) remains the leading cause of death worldwide. A deeper characterization of regional transcription patterns within different heart chambers may aid to improve our understanding of the molecular mechanisms involved in myocardial function and further, our ability to develop novel therapeutic strategies. Here, we used RNA sequencing to determine differentially expressed protein coding (PC) and long non-coding (lncRNA) transcripts within the heart chambers across seven vertebrate species and identified evolutionarily conserved chamber specific genes, lncRNAs and pathways. We investigated lncRNA homologs based on sequence, secondary structure, synteny and expressional conservation and found most lncRNAs to be conserved by synteny. Regional co-expression patterns of transcripts are modulated by multiple factors, including genomic overlap, strandedness and transcript biotype. Finally, we provide a community resource designated EvoACTG, which informs researchers on the conserved yet intertwined nature of the coding and non-coding cardiac transcriptome across popular model organisms in CVD research.

Details about the publication

JournalGenomics
Volume113
Issue6
Page range3782-3792
StatusPublished
Release year2021 (03/11/2021)
Language in which the publication is writtenEnglish
DOI10.1016/j.ygeno.2021.09.002
Link to the full texthttps://pubmed.ncbi.nlm.nih.gov/34506887/
KeywordsCardiac transcriptome; Chamber specificity; lncRNA conservation

Authors from the University of Münster

Stoll, Monika
Humangenetik, Abt. für Genetische Epidemiologie
Witten, Anika
Humangenetik, Abt. für Genetische Epidemiologie