Time-dependent effects of BRAF-V600E on cell cycling, metabolism, and function in engineered myocardium

Author:

Strash Nicholas1ORCID,DeLuca Sophia1ORCID,Janer Carattini Geovanni L.2ORCID,Chen Yifan2ORCID,Wu Tianyu2ORCID,Helfer Abbigail2ORCID,Scherba Jacob2ORCID,Wang Isabella2,Jain Mehul2,Naseri Ramona2,Bursac Nenad12ORCID

Affiliation:

1. Department of Cell Biology, Duke University, Durham NC, USA.

2. Department of Biomedical Engineering, Duke University, Durham NC, USA.

Abstract

Candidate cardiomyocyte (CM) mitogens such as those affecting the extracellular signal–regulated kinase (ERK) signaling pathway represent potential targets for functional heart regeneration. We explored whether activating ERK via a constitutively active mutant of B-raf proto-oncogene (BRAF), BRAF-V600E (caBRAF), can induce proproliferative effects in neonatal rat engineered cardiac tissues (ECTs). Sustained CM-specific caBRAF expression induced chronic ERK activation, substantial tissue growth, deficit in sarcomeres and contractile function, and tissue stiffening, all of which persisted for at least 4 weeks of culture. caBRAF-expressing CMs in ECTs exhibited broad transcriptomic changes, shift to glycolytic metabolism, loss of connexin-43, and a promigratory phenotype. Transient, doxycycline-controlled caBRAF expression revealed that the induction of CM cycling is rapid and precedes functional decline, and the effects are reversible only with short-lived ERK activation. Together, direct activation of the BRAF kinase is sufficient to modulate CM cycling and functional phenotype, offering mechanistic insights into roles of ERK signaling in the context of cardiac development and regeneration.

Publisher

American Association for the Advancement of Science (AAAS)

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