Impact of DYRK1A Expression on TNNT2 Splicing and Daunorubicin Toxicity in Human iPSC-Derived Cardiomyocytes.

Cardiovasc Toxicol

Department of Pharmaceutical Sciences, School of Pharmacy and Pharmaceutical Sciences, The State University of New York at Buffalo, Buffalo, NY, 14214, USA.

Published: August 2022

AI Article Synopsis

  • Cardiac troponin T (TNNT2) is crucial for heart muscle contraction, with its splicing regulated by DYRK1A and SRSF6.
  • Altered splicing of TNNT2 is linked to heart failure, and this study explores how DYRK1A affects TNNT2 variants in stem cell-derived heart cells.
  • Findings show that increased DYRK1A boosts fetal TNNT2 variants and reduces adult ones while influencing the cell's response to the drug daunorubicin (DAU), particularly in how it affects heart beating frequency.

Article Abstract

Cardiac troponin T (encoded by TNNT2) is involved in the contraction of cardiomyocytes during beating. The alternative splicing of TNNT2 results in four transcript variants with differential Ca sensitivity. The splicing of TNNT2 involves phosphorylation of the splicing factor SRSF6 by DYRK1A. Altered TNNT2 splicing patterns have been identified in failing human hearts. There is a paucity of studies describing DYRK1A-SRSF6-TNNT2 interplays in human cardiomyocytes. Also, it is not known whether the sensitivity of cardiomyocytes to cardiotoxic anthracyclines is modified in the context of variable DYRK1A-TNNT2 expression. In this study, we investigated the impact of DYRK1A on the endogenous expression of TNNT2 splicing variants in iPSC-derived cardiomyocytes. We also examined whether DYRK1A expression modifies the sensitivity of cardiomyocytes to the cardiotoxic drug daunorubicin (DAU). DYRK1A over-expression increased the abundance of TNNT2 fetal variants by ~ 58% whereas the abundance of the adult cTnT3 variant decreased by ~ 27%. High DYRK1A expression increased the phosphorylation of SRSF6 by ~ 25-65%. DAU cytotoxicity was similar between cardiomyocytes with variable levels of DYRK1A expression. DYRK1A over-expression ameliorated the impact of DAU on beating frequency. This study lays the foundation to further investigate the contribution of variable DYRK1A-TNNT2 expression to Ca handling and beating in human cardiomyocytes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9236996PMC
http://dx.doi.org/10.1007/s12012-022-09746-6DOI Listing

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