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TGF-beta1-induced cardiac myofibroblasts are nonproliferating functional cells carrying DNA damages
Authors:Petrov Victor V  van Pelt Jos F  Vermeesch Joris R  Van Duppen Viktor J  Vekemans Katrien  Fagard Robert H  Lijnen Paul J
Institution:a Department of Heart Diseases, University of Leuven (KULeuven), Leuven, Belgium
b Department of Liver and Pancreatic Diseases, University of Leuven (KULeuven), Leuven, Belgium
c Center for Human Genetics, University of Leuven (KULeuven), Leuven, Belgium
d Department of Hematology, University of Leuven (KULeuven), Leuven, Belgium
Abstract:TGF-β1 induces differentiation and total inhibition of cardiac MyoFb cell division and DNA synthesis. These effects of TGF-β1 are irreversible. Inhibition of MyoFb proliferation is accompanied with the expression of Smad1, Mad1, p15Ink4B and total inhibition of telomerase activity. Surprisingly, TGF-β1-activated MyoFbs are growth-arrested not only at G1-phase but also at S-phase of the cell cycle. Staining with TUNEL indicates that these cells carry DNA damages. However, the absolute majority of MyoFbs are non-apoptotic cells as established with two apoptosis-specific methods, flow cytometry and caspase-dependent cleavage of cytokeratin 18. Expression in MyoFbs of proliferative cell nuclear antigen even in the absence of serum confirms that these MyoFbs perform repair of DNA damages. These results suggest that TGF-β1-activated MyoFbs can be growth-arrested by two checkpoints, the G1/S checkpoint, which prevents cells from entering S-phase and the intra-S checkpoint, which is activated by encountering DNA damage during the S phase or by unrepaired damage that escapes the G1/S checkpoint. Despite carrying of the DNA damages TGF-β1-activated MyoFbs are highly functional cells producing lysyl oxidase and contracting the collagen matrix.
Keywords:Myofibroblasts  TGF-β1  Cell differentiation  Cell proliferation  Telomerase  Cell cycle  Cytoskeleton  DNA synthesis  DNA damage  DNA repair  Apoptosis  Flow cytometry  Lysyl oxidase  Collagen matrix contraction
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