Journal Article

Tobacco components stimulate Akt-dependent proliferation and NFκB-dependent survival in lung cancer cells

Junji Tsurutani, S.Sianna Castillo, John Brognard, Courtney A. Granville, Chunyu Zhang, Joell J. Gills, Jacqueline Sayyah and Phillip A. Dennis

in Carcinogenesis

Volume 26, issue 7, pages 1182-1195
Published in print July 2005 | ISSN: 0143-3334
Published online March 2005 | e-ISSN: 1460-2180 | DOI: http://dx.doi.org/10.1093/carcin/bgi072
Tobacco components stimulate Akt-dependent proliferation and NFκB-dependent survival in lung cancer cells

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Retrospective studies have shown that patients with tobacco-related cancers who continue to smoke after their diagnoses have lower response rates and shorter median survival compared with patients who stop smoking. To provide insight into the biologic basis for these clinical observations, we tested whether two tobacco components, nicotine or the tobacco-specific carcinogen, 4-(methylnitrosoamino)-1-(3-pyridyl)-1-butanone (NNK), could activate the Akt pathway and increase lung cancer cell proliferation and survival. Nicotine or NNK, rapidly and potently, activated Akt in non-small cell lung cancer (NSCLC) or small cell lung cancer (SCLC) cells. Nicotinic activation of Akt increased phosphorylation of multiple downstream substrates of Akt in a time-dependent manner, including GSK-3, FKHR, tuberin, mTOR and S6K1. Since nicotine or NNK bind to cell surface nicotinic acetylcholine receptors (nAchR), we used RT–PCR to assess expression of nine alpha and three beta nAchR subunits in five NSCLC cell lines and two types of primary lung epithelial cells. NSCLC cells express multiple nAchR subunits in a cell line-specific manner. Agonists of α3/α4 or α7 subunits activated Akt in a time-dependent manner, suggesting that tobacco components utilize these subunits to activate Akt. Cellular outcomes after nicotine or NNK administration were also assessed. Nicotine or NNK increased proliferation of NSCLC cells in an Akt-dependent manner that was closely linked with changes in cyclin D1 expression. Despite similar induction of proliferation, only nicotine decreased apoptosis caused by serum deprivation and/or chemotherapy. Protection conferred by nicotine was NFκB-dependent. Collectively, these results identify tobacco component-induced, Akt-dependent proliferation and NFκB-dependent survival as cellular processes that could underlie the detrimental effects of smoking in cancer patients.

Keywords: DMXB, 3-[2,4-dimethoxybenzylidene] anabaseine; DnAkt, dominant negative Akt; GSK, glycogen synthesis kinase; HA, hemagglutin; MDM2, mouse double minute 2 homologue; mTOR, mammalian target of rapamycin; nAchR, nicotinic acetylcholine receptors; NFκB, nuclear factor kappa B; NNK, 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone; NSCLC, non-small cell lung cancer; PI3K, phosphatidylinositol 3-kinase; PARP, poly (ADP ribose) polymerase; SCLC, small cell lung cancer

Journal Article.  7238 words.  Illustrated.

Subjects: Clinical Cytogenetics and Molecular Genetics

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