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In their paper titled “Dynamics and consequences of differential RNA isoform production during cardiomyocyte fate determination and early-stage maturation”, the team consisting of Joanna Delimata-Raczek, Dr. Natalia Koralewska, Bart Krist, Magdalena Rakoczy, Prof. Marek Figlerowicz, and Dr. Ireneusz Stolarek analyzed how the accumulation of RNA isoforms changes during the differentiation and early maturation of human cardiomyocytes.
The study showed that RNA isoform switching occurs on a large scale and—crucially—often takes place independently of changes in overall gene expression. This means that regulation at the RNA isoform level represents an additional, still underestimated layer of control over the processes responsible for heart cell development.
Key findings:
The team’s findings indicate that the regulation of transcript isoforms is not merely a side effect of cell differentiation, but rather one of the key mechanisms underlying cardiomyocyte maturation. These findings may have important implications for research on heart development, disease modeling, and future regenerative therapies.
We encourage you to read the full article in Genome Research: https://genome.cshlp.org/content/36/5/903
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