c-kit expression identifies cardiovascular precursors in the neonatal heart
Open Access
- 10 February 2009
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (6) , 1808-1813
- https://doi.org/10.1073/pnas.0808920106
Abstract
Directed differentiation of embryonic stem cells indicates that mesodermal lineages in the mammalian heart (cardiac, endothelial, and smooth muscle cells) develop from a common, multipotent cardiovascular precursor. To isolate and characterize the lineage potential of a resident pool of cardiovascular progenitor cells (CPcs), we developed BAC transgenic mice in which enhanced green fluorescent protein (EGFP) is placed under control of the c-kit locus (c-kitBAC-EGFP mice). Discrete c-kit-EGFP+ cells were observed at different stages of differentiation in embryonic hearts, increasing in number to a maximum at about postnatal day (PN) 2; thereafter, EGFP+ cells declined and were rarely observed in the adult heart. EGFP+ cells purified from PN 0–5 hearts were nestin+ and expanded in culture; 67% of cells were fluorescent after 9 days. Purified cells differentiated into endothelial, cardiac, and smooth muscle cells, and differentiation could be directed by specific growth factors. CPc-derived cardiac myocytes displayed rhythmic beating and action potentials characteristic of multiple cardiac cell types, similar to ES cell-derived cardiomyocytes. Single-cell dilution studies confirmed the potential of individual CPcs to form all 3 cardiovascular lineages. In adult hearts, cryoablation resulted in c-kit-EGFP+ expression, peaking 7 days postcryolesion. Expression occurred in endothelial and smooth muscle cells in the revascularizing infarct, and in terminally differentiated cardiomyocytes in the border zone surrounding the infarct. Thus, c-kit expression marks CPc in the neonatal heart that are capable of directed differentiation in vitro; however, c-kit expression in cardiomyocytes in the adult heart after injury does not identify cardiac myogenesis.Keywords
This publication has 26 references indexed in Scilit:
- c-kit Is Required for Cardiomyocyte Terminal DifferentiationCirculation Research, 2008
- Evolution of the c-kit-Positive Cell Response to Pathological Challenge in the MyocardiumThe International Journal of Cell Cloning, 2008
- BAC transgenic mice express enhanced green fluorescent protein in central and peripheral cholinergic neuronsPhysiological Genomics, 2006
- Stem cell niches in the adult mouse heartProceedings of the National Academy of Sciences, 2006
- Distinctive Role of the cKit Receptor Tyrosine Kinase Signaling in Mammalian MelanocytesJournal of Investigative Dermatology, 2006
- Stem cell factor and its receptor c-Kit as targets for inflammatory diseasesEuropean Journal of Pharmacology, 2006
- WZsGreen/+: a new green fluorescent protein knock-in mouse model for the study of KIT-expressing cells in gut and cerebellumPhysiological Genomics, 2005
- Nestin‐expressing neural stem cells identified in the scar following myocardial infarctionJournal of Cellular Physiology, 2004
- Adult Cardiac Stem Cells Are Multipotent and Support Myocardial RegenerationCell, 2003
- Cloning and Functional Analysis of the Mouse c-kit PromoterBiochemical and Biophysical Research Communications, 1993