Inhibition of the p53 Tumor Suppressor Gene Results in Growth of Human Aortic Vascular Smooth Muscle Cells

Author:

Aoki Motokuni1,Morishita Ryuichi1,Matsushita Hidetsugu1,Hayashi Shin-ichiro1,Nakagami Hironori1,Yamamoto Kei1,Moriguchi Atsushi1,Kaneda Yasufumi1,Higaki Jitsuo1,Ogihara Toshio1

Affiliation:

1. From the Department of Geriatric Medicine (M.A., H.M., S.H., H.N., K.Y., A.M., J.H., T.O.) and Division of Gene Therapy Science (R.M., Y.K.), Osaka University Medical School, Suita, Japan.

Abstract

Abstract —Loss of activity of the p53 tumor suppressor gene product has been postulated in the pathogenesis of human restenosis. Although the antioncogenes p53 and retinoblastoma (Rb) susceptibility gene have been reported to play a pivotal role in cell cycle progression in various cells, the role of p53 and Rb in the growth of human vascular smooth muscle cells (VSMC) has not yet been clarified. We used antisense strategy against p53 and Rb genes by the viral envelope–liposomal method. Transfection of antisense p53 oligodeoxynucleotides (ODN) alone resulted in an increase in DNA synthesis compared with control ( P <0.01). Similarly, transfection of antisense Rb ODN alone resulted in a higher DNA synthesis rate than control ( P <0.01). Moreover, increase in VSMC number was only induced by transfection of antisense p53 ODN alone or cotransfection of p53/Rb ODN ( P <0.01), whereas a single transfection of antisense Rb ODN had little effect on cell number. Therefore, we hypothesized that this discrepancy is due to the induction of apoptosis mediated by p53. Interestingly, apoptotic cells were markedly increased in VSMC transfected with antisense Rb ODN alone, accompanied by the induction of p53 protein. The number of apoptotic cells was attenuated by cotransfection of antisense p53 ODN ( P <0.01). We finally examined the molecular mechanisms of apoptosis induced by the absence of Rb. In VSMC transfected with antisense Rb ODN, bax, a promoter of apoptosis, was significantly increased in VSMC transfected with antisense Rb ODN ( P <0.01), whereas bcl-2 and Fas did not play a pivotal role in the induction of apoptosis. Overall, these data first demonstrated that the antioncogenes p53 and Rb negatively regulated the cell cycle in VSMC, suggesting that the modulation of their activity may mediate VSMC growth such as that in restenosis and atherosclerosis. The presence of p53 plays a pivotal role in the regulation of apoptosis in human VSMC growth, probably through the bax pathway. These results provide evidence that p53 is a functional link between cell growth and apoptosis in VSMC.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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