Abstract
The purification, renewal and differentiation of native cardiac progenitors would form a mechanistic underpinning for unravelling steps for cardiac cell lineage formation, and their links to forms of congenital and adult cardiac diseases. Until now there has been little evidence for native cardiac precursor cells in the postnatal heart. Herein, we report the identification of isl1+ cardiac progenitors in postnatal rat, mouse and human myocardium. A cardiac mesenchymal feeder layer allows renewal of the isolated progenitor cells with maintenance of their capability to adopt a fully differentiated cardiomyocyte phenotype. Tamoxifen-inducible Cre/lox technology enables selective marking of this progenitor cell population including its progeny, at a defined time, and purification to relative homogeneity. Co-culture studies with neonatal myocytes indicate that isl1+ cells represent authentic, endogenous cardiac progenitors (cardioblasts) that display highly efficient conversion to a mature cardiac phenotype with stable expression of myocytic markers (25%) in the absence of cell fusion, intact Ca2+-cycling, and the generation of action potentials. The discovery of native cardioblasts represents a genetically based system to identify steps in cardiac cell lineage formation and maturation in development and disease.
MeSH Terms
Action Potentials
Animals
Biomarkers/analysis,metabolism
Calcium/metabolism
Calcium Signaling
Cell Differentiation
Cell Fusion
Cell Lineage
Cells, Cultured
Coculture Techniques
Genetic Markers/genetics
Heart/embryology,growth & development
Homeodomain Proteins/analysis,metabolism
Humans
LIM-Homeodomain Proteins
Mice
Myoblasts, Cardiac/cytology,metabolism
Myocardium/cytology,metabolism
Nerve Tissue Proteins/analysis,metabolism
Rats
Transcription Factors
Chemicals
Biomarkers
Genetic Markers
Homeodomain Proteins
LIM-Homeodomain Proteins
Nerve Tissue Proteins
Transcription Factors
insulin gene enhancer binding protein Isl-1
Calcium
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Laugwitz Karl-Ludwig
Institute of Molecular Medicine, University of California, San Diego, School of Medicine, La Jolla, California 92093, USA.
Moretti Alessandra
Lam Jason
Gruber Peter
Chen Yinhong
Woodard Sarah
Lin Li-Zhu
Cai Chen-Leng
Lu Min Min
Reth Michael
Platoshyn Oleksandr
Yuan Jason X-J
Evans Sylvia
Chien Kenneth R
References (24)
24 references, click to expand
-
Generalized lacZ expression with the ROSA26 Cre reporter strain.
Nat Genet. 1999 Jan;21(1):70-1
PMID: 9916792
-
Haematopoietic stem cells do not transdifferentiate into cardiac myocytes in myocardial infarcts.
Nature. 2004 Apr 8;428(6983):664-8
PMID: 15034593
-
Modification of gene activity in mouse embryos in utero by a tamoxifen-inducible form of Cre recombinase.
Curr Biol. 1998 Dec 3;8(24):1323-6
PMID: 9843687
-
Temporally and spatially regulated somatic mutagenesis in mice.
Nucleic Acids Res. 1998 Mar 15;26(6):1427-32
PMID: 9490788
-
Nkx2-5 pathways and congenital heart disease; loss of ventricular myocyte lineage specification leads to progressive cardiomyopathy and complete heart block.
Cell. 2004 Apr 30;117(3):373-86
PMID: 15109497
-
Prometheus's vulture and the stem-cell promise.
N Engl J Med. 2003 Jul 17;349(3):267-74
PMID: 12867611
-
A new look at the origin, function, and "stem-cell" status of muscle satellite cells.
Dev Biol. 2000 Feb 15;218(2):115-24
PMID: 10656756
-
Persistent expression of the ATP-binding cassette transporter, Abcg2, identifies cardiac SP cells in the developing and adult heart.
Dev Biol. 2004 Jan 1;265(1):262-75
PMID: 14697368
-
Developing models of DiGeorge syndrome.
Trends Genet. 2001 Oct;17(10):S13-7
PMID: 11585671
-
Tracking metastatic tumor cell extravasation with quantum dot nanocrystals and fluorescence emission-scanning microscopy.
Nat Med. 2004 Sep;10(9):993-8
PMID: 15334072
-
Cell fusion-independent differentiation of neural stem cells to the endothelial lineage.
Nature. 2004 Jul 15;430(6997):350-6
PMID: 15254537
-
Cre reporter strains produced by targeted insertion of EYFP and ECFP into the ROSA26 locus.
BMC Dev Biol. 2001;1:4
PMID: 11299042
-
Cardiac progenitor cells from adult myocardium: homing, differentiation, and fusion after infarction.
Proc Natl Acad Sci U S A. 2003 Oct 14;100(21):12313-8
PMID: 14530411
-
Isl1 identifies a cardiac progenitor population that proliferates prior to differentiation and contributes a majority of cells to the heart.
Dev Cell. 2003 Dec;5(6):877-89
PMID: 14667410
-
Adult cardiac stem cells are multipotent and support myocardial regeneration.
Cell. 2003 Sep 19;114(6):763-76
PMID: 14505575
-
Bone marrow-derived hematopoietic cells generate cardiomyocytes at a low frequency through cell fusion, but not transdifferentiation.
Nat Med. 2004 May;10(5):494-501
PMID: 15107841
-
Efficient recombination in diverse tissues by a tamoxifen-inducible form of Cre: a tool for temporally regulated gene activation/inactivation in the mouse.
Dev Biol. 2002 Apr 15;244(2):305-18
PMID: 11944939
-
Are somatic stem cells pluripotent or lineage-restricted?
Nat Med. 2002 Mar;8(3):213-4
PMID: 11875484
-
Establishment of beta-adrenergic modulation of L-type Ca2+ current in the early stages of cardiomyocyte development.
Circ Res. 1999 Feb 5;84(2):136-45
PMID: 9933244
-
Converging pathways and principles in heart development and disease: CV@CSH.
Cell. 2002 Jul 26;110(2):153-62
PMID: 12150924
-
Comparison of the tamoxifen regulated chimeric Cre recombinases MerCreMer and CreMer.
Biol Chem. 1999 Dec;380(12):1435-8
PMID: 10661871
-
Haematopoietic stem cells adopt mature haematopoietic fates in ischaemic myocardium.
Nature. 2004 Apr 8;428(6983):668-73
PMID: 15034594
-
Stem cells: lost in translation.
Nature. 2004 Apr 8;428(6983):607-8
PMID: 15034595
-
Human embryonic stem cells develop into multiple types of cardiac myocytes: action potential characterization.
Circ Res. 2003 Jul 11;93(1):32-9
PMID: 12791707