Telomerase allows the immortalization of T antigen-positive DMD myoblasts: a new source of cells for gene transfer application
- 1 April 2000
- journal article
- inherited disease
- Published by Springer Nature in Gene Therapy
- Vol. 7 (7) , 619-623
- https://doi.org/10.1038/sj.gt.3301132
Abstract
The limited proliferative capacity of DMD myoblasts severely limits their ability to be genetically modified and used for myoblast transplantation. Transformation by SV40 large T antigen (Tag) delays senescence of mouse and human myoblasts but fails to immortalize these cells. The cells ceased to proliferate and entered into crisis. Reconstitution of telomerase activity has been shown sufficient to enable different types of transformed cells to escape crisis. DMD myoblasts, previously transformed by Tag, were therefore infected with a telomerase retrovirus. The expression of telomerase was sufficient to allow DMD-Tag myoblasts to escape crisis. The telomerase-positive transformed myoblasts continued to divide for more than 55 doublings while Tag myoblasts stopped proliferating after 35 doublings. These cells are able to fuse and to differentiate normally. The average telomere length of these telomerase-positive DMD-Tag myoblasts seems to continue to elongate. Thus, transiently genetically modified myoblasts could constitute an important pool of DMD myoblasts for autologous transplantation in DMD patients.Keywords
This publication has 15 references indexed in Scilit:
- Creation of human tumour cells with defined genetic elementsNature, 1999
- Extension of Life-Span by Introduction of Telomerase into Normal Human CellsScience, 1998
- Telomerase activation during the linear evolution of human fibroblasts to tumorigenicity in nude miceCarcinogenesis: Integrative Cancer Research, 1996
- SV40 Large T Antigen Interferes with Adult Myosin Heavy Chain Expression, but Not with Differentiation of Human Satellite CellsExperimental Cell Research, 1996
- Establishment of Long-Term Myogenic Cultures from Patients with Duchenne Muscular Dystrophy by Retroviral Transduction of a Temperature-Sensitive SV40 Large T AntigenExperimental Cell Research, 1996
- Telomeres, Telomerase and CancerScientific American, 1996
- Accelerated age-related decline in replicative life-span of Duchenne muscular dystrophy myoblasts: Implications for cell and gene therapySomatic Cell and Molecular Genetics, 1990
- SV40 immortalizes myogenic cells: DNA synthesis and mitosis in differentiating myotubesDifferentiation, 1990
- Quantitation of the frequency of immortalization of normal human diploid fibroblasts by SV40 large T-antigenExperimental Cell Research, 1989
- Transformation of human skeletal muscle cells by simian virus 40.Proceedings of the National Academy of Sciences, 1983