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Bisson, J. A.

Publications and source records attributed to Bisson, J. A..

2 recordsLinked to original sources

FZD2 inhibits YAP and prevents cell cycle reentry in adult murine cardiomyocytes

RationaleFully differentiated cardiomyocytes (CMs) are post-mitotic and cannot repopulate damaged tissue after myocardial infarction (MI). Understanding the mechanisms preventing CM proliferation or promoting their survival after injury may lead to treatment strategies for MI. While the effects of canonical WNT/{beta}-catenin signaling in adult CMs have been examined, roles for non-canonical WNT signaling in cardiac homeostasis and repair remain unexplored. ObjectiveTo determine the function of the non-canonical WNT receptor frizzled 2 (FZD2) in adult cardiac homeostasis and injury. Methods and ResultsFZD2 was deleted from the CMs of adult mice to investigate its role in myocardial homeostasis. Fzd2 conditional knockout (CKO) mice had cardiomegaly but not hypertrophy. FZD2-deficient CMs expressed proliferation and cytokinesis markers, suggesting that they have increased proliferation potential. FZD2-deletion caused the accumulation of {beta}-catenin. However, {beta}-catenin localized to the membranes of FZD2-deficient CMs and did not activate target gene expression. Instead, the YES-associated protein (YAP) regulated genes v-myc avian myelocytomatosis viral oncogene 1 (Mycl), and B cell leukemia/lymphoma 2 (Bcl2l1) were upregulated in Fzd2 CKO CMs relative to controls. Knockdown of FZD2 increased YAP activity in neonatal ventricular CMs (NVCMs), while overexpressing FZD2 inhibited YAP. Neither {beta}-catenin knockdown nor mutating the large tumor suppressor 1 and 2 (LATS1/2) target site on YAP blocked the effects of FZD2 on YAP in NVCMs, suggesting that FZD2 utilizes different effectors than canonical WNT and Hippo signaling. Fzd2 CKO and control mice were subjected to MI to determine if FZD2-deletion affects cardiac repair. While ischemia and necrosis were similar 24 hours post MI, Fzd2 CKO mice had better cardiac function and less scarring than controls. ConclusionsFZD2 reduces YAP activity and prevents adult murine CMs from reentering the cell cycle. FZD2-deletion improves heart function and reduces scarring in mice after MI, implicating FZD2 as a target for pharmacological intervention.

cell biology↗

GATA6 regulates WNT and BMP programs to pattern precardiac mesoderm during the earliest stages of human cardiogenesis

Haploinsufficiency for GATA6 is associated with congenital heart disease (CHD) with variable comorbidity of pancreatic or diaphragm defects, although the etiology of disease is not well understood. Here, we used cardiac directed differentiation from human embryonic stem cells (hESCs) as a platform to study GATA6 function during early cardiogenesis. GATA6 loss-of-function hESCs had a profound impairment in cardiac progenitor cell (CPC) specification and cardiomyocyte (CM) generation due to early defects during the mesendoderm and lateral mesoderm patterning stages. Profiling by RNA-seq and CUT&RUN identified genes of the WNT and BMP programs regulated by GATA6 during early mesoderm patterning. Furthermore, interactome analysis detected GATA6 binding with developmental transcription factors and chromatin remodelers suggesting cooperative regulation of cardiac lineage gene accessibility. We show that modulating WNT and BMP inputs during the first 48 hours of cardiac differentiation is sufficient to partially rescue CPC and CM defects in GATA6 heterozygous and homozygous mutant hESCs. This study provides evidence of the regulatory functions for GATA6 directing human precardiac mesoderm patterning during the earliest stages of cardiogenesis to further our understanding of haploinsufficiency causing CHD and the co-occurrence of cardiac and other organ defects caused by human GATA6 mutations.

developmental biology↗