Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5945922 | Atherosclerosis | 2014 | 9 Pages |
â¢MiR-133a, but not miR-1, is the prominent type of miR that regulates expression of IGF-1R in mouse VSMC.â¢MiR-133a can stabilize IGF-1R mRNA and prolong its half-life in lipoprotein deficient serum cultured VSMC.â¢MiR-133a may be the key functional regulator of VSMC proliferation.
ObjectiveMicroRNA-133a (miR-133a) and insulin-like growth factor-1 (IGF-1) are two different molecules known to regulate cardiovascular cell proliferation. This study tested whether miR-133a affects expression of IGF-1 receptor (IGF-1R) and proliferation of IGF-1-stimulated vascular smooth muscle cells (VSMC) in a murine model of atherosclerosis.Methods and resultsExpression of IGF-1R was analyzed by immuno-fluorescence and immuno-blotting, and miR-133a by qRT-PCR in the aortas of wild-type C57BL/6J (WT) and apolipoprotein-E deficient (ApoEâ/â) mice. Compared to those in WT aortas, the IGF-1R and miR-133a levels were lower in ApoEâ/â aortas. ApoEâ/â VSMC grew slower than WT cells in the cultures with IGF-1-containing medium. MiR-133a-specific inhibitor decreased miR-133a, IGF-1R expression, IGF-1-stimulated VSMC growth in lipoprotein deficient media. By contrast, miR-133a precursor increased IGF-1R levels and promoted IGF-1-induced VSMC proliferation. In the luciferase-IGF-1R 3â²UTR reporter system, the reporter luciferase activity was not inhibited in VSMC with miR-133a overexpression. IGF-1R mRNA half-life in ApoEâ/â VSMC was shorter than that in WT VSMC. MiR-133a inhibitor reduced but precursor increased the mRNA half-life, although the effects appeared less striking in ApoEâ/â VSMC than in WT cells.ConclusionMiR-133a serves as a stimulatory factor for IGF-1R expression through prolonging IGF-1R mRNA half-life. In atherosclerosis induced by ApoE deficiency, reduced miR-133a expression is associated with lower IGF-1R levels and suppressive VSMC growth. Administration of miR-133a precursor may potentiate IGF-1-stimulated VSMC survival and growth.