Increased Radioresistance, G2/M Checkpoint Inhibition, and Impaired Migration of Bone Marrow Stromal Cell Lines Derived from Smad3−/−Mice
- 1 June 2006
- journal article
- Published by Radiation Research Society in Radiation Research
- Vol. 165 (6) , 671-677
- https://doi.org/10.1667/rr3572.1
Abstract
Smad3 protein is a prominent member of the Tgfb receptor signaling pathway. Smad3(-/-) mice display decreased radiation-induced skin fibrosis, suggesting a defect in both Tgfb-mediated fibroblast proliferation and migration. We established bone marrow stromal cell lines from Smad3(-/-) mice and homozygous littermate(+/+) mice. Smad3(-/-) cells displayed a significant increase in radiation resistance with a D(0)=2.25+/- 0.14 Gy compared to Smad3(+/+) cells with a D(0)=1.75+/- 0.03 (P=0.023). Radioresistance was abrogated by reinsertion of the human SMAD3 transgene, resulting in a D(0)=1.49 0.10 (P=0.028) for Smad3(-/-)(3) cells. More Smad3(-/-) cells than Smad3(+/+) cells were in the G(2)/M phase; Smad3(-/-)(3) cells were similar to Smad3(+/+) cells. Smad3(+/+) cells exhibited increased apoptosis 24 h after 5 Gy (15%) or 8 Gy (43%) compared to less than 1% in Smad3(-/-) cells exposed to either dose. The movement of Smad3(-/-) cells, measured in an automated cell tracking system, was slower than that of Smad3(+/+) cells. Smad3(-/-)(3) cells resembled Smad3(+/+) cells. These studies establish concordance of a defective Tgfb signal transduction pathway, an increased proportion of G(2)/M cells, and radioresistance. The decreased migratory capacity of Smad3(-/-) cells in vitro correlates with decreased radiation fibrosis in vivo in mice deficient in Tgfb signaling.Keywords
This publication has 22 references indexed in Scilit:
- Increased longevity of hematopoiesis in continuous bone marrow cultures and adipocytogenesis in marrow stromal cells derived from Smad3−/− miceExperimental Hematology, 2005
- TGF‐β signaling and the fibrotic responseThe FASEB Journal, 2004
- Interference with Transforming Growth Factor-β/ Smad3 Signaling Results in Accelerated Healing of Wounds in Previously Irradiated SkinThe American Journal of Pathology, 2003
- Mice Lacking Smad3 Are Protected Against Cutaneous Injury Induced by Ionizing RadiationThe American Journal of Pathology, 2002
- TGF-β/Smad3 Signals Repress Chondrocyte Hypertrophic Differentiation and Are Required for Maintaining Articular CartilageThe Journal of cell biology, 2001
- NEW EMBO MEMBERS REVIEW: Transcriptional control by the TGF-beta/Smad signaling systemThe EMBO Journal, 2000
- Manganese [correction of Magnesium] superoxide dismutase (MnSOD) plasmid/liposome pulmonary radioprotective gene therapy: Modulation of irradiation-induced mRNA for IL-I, TNF-alpha, and TGF-beta correlates with delay of organizing alveolitis/fibrosisTransplantation and Cellular Therapy, 1999
- REGULATION OF GENE EXPRESSION BY REACTIVE OXYGENAnnual Review of Pharmacology and Toxicology, 1999
- Targeted disruption of SMAD3 results in impaired mucosal immunity and diminished T cell responsiveness to TGF-betaThe EMBO Journal, 1999
- Ionizing radiation activates transcription of the EGR1 gene via CArG elements.Proceedings of the National Academy of Sciences, 1992