Notch activates cell cycle reentry and progression in quiescent cardiomyocytes

Author:

Campa Víctor M.1,Gutiérrez-Lanza Raquel1,Cerignoli Fabio1,Díaz-Trelles Ramón1,Nelson Brandon1,Tsuji Toshiya1,Barcova Maria1,Jiang Wei1,Mercola Mark1

Affiliation:

1. Burnham Institute for Medical Research, La Jolla, CA 92037

Abstract

The inability of heart muscle to regenerate by replication of existing cardiomyocytes has engendered considerable interest in identifying developmental or other stimuli capable of sustaining the proliferative capacity of immature cardiomyocytes or stimulating division of postmitotic cardiomyocytes. Here, we demonstrate that reactivation of Notch signaling causes embryonic stem cell–derived and neonatal ventricular cardiomyocytes to enter the cell cycle. The proliferative response of neonatal ventricular cardiomyocytes declines as they mature, such that late activation of Notch triggers the DNA damage checkpoint and G2/M interphase arrest. Notch induces recombination signal-binding protein 1 for Jκ (RBP-Jκ)-dependent expression of cyclin D1 but, unlike other inducers, also shifts its subcellular distribution from the cytosol to the nucleus. Nuclear localization of cyclin D1 is independent of RBP-Jκ. Thus, the influence of Notch on nucleocytoplasmic localization of cyclin D1 is an unanticipated property of the Notch intracellular domain that is likely to regulate the cell cycle in multiple contexts, including tumorigenesis as well as cardiogenesis.

Publisher

Rockefeller University Press

Subject

Cell Biology

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