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Published on: February 15, 2022
Lovastatin inhibits thrombospondin-1-induced smooth muscle cell chemotaxis
Nowokere Esemuede1, Taeseung Lee, Kristopher G Maier
1Section of Vascular Surgery, Yale University School of Medicine, New Haven, Connecticut, USA.
Insights
Lovastatin inhibits vascular smooth muscle cell migration induced by thrombospondin-1 (TSP-1) by blocking the Ras signaling pathway. This effect is mediated through the mevalonate pathway, highlighting a key mechanism for statin therapy in vascular disease.
Area of Science:
- Vascular Biology
- Cell Signaling
- Pharmacology
Background:
- Thrombospondin-1 (TSP-1) drives vascular smooth muscle cell (VSMC) migration, contributing to intimal hyperplasia.
- Statins, like lovastatin, mitigate vascular restenosis post-angioplasty through cholesterol-lowering and pleiotropic effects.
- The mevalonate pathway inhibition underlies statins' pleiotropic actions, impacting small G protein isoprenylation essential for cell migration.
Purpose of the Study:
- To investigate if lovastatin inhibits TSP-1-induced VSMC chemotaxis.
- To determine the role of the mevalonate pathway and small G proteins (Ras and Rho) in this process.
- To elucidate the specific mechanism by which lovastatin affects TSP-1-mediated VSMC migration.
Main Methods:
- VSMC chemotaxis was measured using a modified Boyden chamber assay.
- Cells were pretreated with lovastatin, mevalonate, farnesyl transferase inhibitors (FTI), geranylgeranyl transferase inhibitors (GGTI), or a Rho kinase inhibitor (Y-27632).
- Ras activation was assessed via Western blot following TSP-1 stimulation.
Main Results:
- Lovastatin demonstrated a dose-dependent inhibition of TSP-1-induced VSMC chemotaxis, which was reversible with mevalonate.
- Inhibition of TSP-1-induced Ras activation and chemotaxis was observed with FTI and FPT, but not GGTI or Y-27632.
- Lovastatin's inhibition of Ras activation was reversed by mevalonate, confirming Ras involvement.
Conclusions:
- Ras signaling, rather than Rho, is critical for TSP-1-induced VSMC chemotaxis.
- Lovastatin effectively suppresses TSP-1-induced VSMC chemotaxis by inhibiting Ras activation via the mevalonate pathway.
- These findings offer insights into the therapeutic mechanisms of statins in preventing vascular remodeling.
Background:
Thrombospondin-1 (TSP-1) induces vascular smooth muscle cell (VSMC) migration and is important in the development of intimal hyperplasia. HMG-CoA reductase inhibitors, such as lovastatin, reduce the incidence of vascular restenosis after angioplasty by both cholesterol lowering and pleiotropic effects. Inhibition of the mevalonate pathway is largely responsible for these pleiotropic properties. This inhibition prevents isoprenylation of the small G proteins, Rho and Ras, by geranylgeranyl and farnesyl pyrophosphate, respectively. Isoprenylation is required for Ras and Rho activation, which is relevant for cell migration.
Hypothesis:
Lovastatin inhibits TSP-1-induced VSMC chemotaxis by inhibiting small G proteins via the mevalonate pathway.
Methods:
Chemotaxis was assessed using a modified Boyden chamber. Quiescent VSMCs were pretreated with serum free media (SFM), lovastatin with or without mevalonate farnesyl (FTI), geranylgeranyl transferase inhibitors (GGTI), farnesyl transferase inhibitor (FPT), or the Rho kinase inhibitor (Y-27632). Chemoattractants were SFM or TSP-1. Comparisons were made by ANOVA followed by post-hoc testing (P<0.05). The effect of lovastatin on Ras activation was evaluated using cells pretreated with SFM or lovastatin, with or without mevalonate prior to TSP-1 exposure. Western blot for Ras activation was performed.
Results:
Lovastatin dose-dependently inhibited TSP-1-induced chemotaxis, which was reversed by mevalonate. Mevalonate did not induce chemotaxis independently. FTI and FPT, but not GGTI or Y-27632, inhibited TSP-1-induced Ras activation and TSP-1-induced chemotaxis. Lovastatin inhibition of Ras activation was reversed with mevalonate.
Conclusion:
Ras, not Rho, is relevant for TSP-1-induced VSMC chemotaxis. These data suggest that lovastatin suppresses TSP-1-induced chemotaxis by inhibition of Ras.
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