Rapamycin-FKBP Inhibits Cell Cycle Regulators of Proliferation in Vascular Smooth Muscle Cells
- 1 March 1995
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 76 (3) , 412-417
- https://doi.org/10.1161/01.res.76.3.412
Abstract
Multiple growth factors can stimulate quiescent vascular smooth muscle cells to exit from G0 and reenter the cell cycle. The macrolide antibiotic rapamycin, bound to its cytosolic receptor FKBP, is an immunosuppressant and a potent inhibitor of cellular proliferation. In the present study, the antiproliferative effects of rapamycin on human and rat vascular smooth muscle cells were examined and compared with the effects of a related immunosuppressant, FK520. In vascular smooth muscle cells, rapamycin, at concentrations as low as 1 ng/mL, inhibited DNA synthesis and cell growth. FK520, an analogue of the immunosuppressant FK506, is structurally related to rapamycin and binds to FKBP but did not inhibit vascular smooth muscle cell growth. Molar excesses of FK520 blocked the antiproliferative effects of rapamycin, indicating that the effects of rapamycin required binding to FKBP. Rapamycin-FKBP inhibited retinoblastoma protein phosphorylation at the G1/S transition. This inhibition of retinoblastoma protein phosphorylation was associated with a decrease in p33cdk2 kinase activity. These observations suggest that rapamycin, but not FK520, inhibits vascular smooth muscle cell proliferation by reducing cell-cycle kinase activity.Keywords
This publication has 34 references indexed in Scilit:
- Molecular atherectomy for restenosisTrends in Cardiovascular Medicine, 1993
- Smooth muscle cell and endothelial cell growth factorsTrends in Cardiovascular Medicine, 1993
- Molecular biology of intimal proliferationCurrent Opinion in Cardiology, 1993
- Chronic Graft Rejection: Accelerated Transplant ArteriosclerosisImmunological Reviews, 1993
- Transforming growth factor β1‐mediated inhibition of smooth muscle cell proliferation is associated with a late G1 cell cycle arrestJournal of Cellular Physiology, 1993
- Integration of cell cycle control with transcriptional regulation by the retinoblastoma proteinCurrent Opinion in Cell Biology, 1993
- Cell cycle dependent gene expression in quiescent stimulated and asynchronously cycling arterial smooth muscle cells in cultureJournal of Cellular Physiology, 1992
- The role of platelets, thrombin and hyperplasia in restenosis after coronary angioplastyJournal of the American College of Cardiology, 1991
- Angiotensin II-stimulated protein synthesis in cultured vascular smooth muscle cells.Hypertension, 1989
- Intimal proliferation of smooth muscle cells as an explanation for recurrent coronary artery stenosis after percutaneous transluminal coronary angioplastyJournal of the American College of Cardiology, 1985