4.6 Article

Retinol decreases β-catenin protein levels in retinoic acid-resistant colon cancer cell lines

期刊

MOLECULAR CARCINOGENESIS
卷 46, 期 4, 页码 315-329

出版社

WILEY
DOI: 10.1002/mc.20280

关键词

colon cancer; beta-catenin; ubiquitin; vitamin A; RXR

资金

  1. NIEHS NIH HHS [ES07784] Funding Source: Medline

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The beta-catenin signaling pathway is dysiregulated in most cases of colon cancer resulting in an accumulation of nuclear beta-catenin and increased transcription of genes involved in tumor progression. This study examines the effect of retinol on beta-catenin protein levels in three all-trans retinoic acid (ATRA)-resistant human colon cancer cell lines: HCT-116, WiDr, and SW620. Each cell line was treated with increasing concentrations of retinol for 24 or 48 h. Retinol reduced beta-catenin protein levels and increased ubiquitinated beta-catenin in all cell lines. Treatment with the proteasomal inhibitor MG132 blocked the retinol-induced decrease in beta-catenin indicating retinol decreases beta-catenin by increasing proteasomal degradation. Multiple pathways direct beta-catenin to the proteasome for degradation including a p53/Siah1/adenomatous polyposis coli (APC), a Wnt/glycogen synthase kinase-3p/APC, and a retinoid X receptor (RXR)mediated pathway. Due to mutations in beta-catenin (HCT-116), APC (SW620), and p53 (WiDr), only the RXR-mediated pathway remains functional in each cell line. To determine if RXRs facilitate beta-catenin degradation, cells were treated with the RXR pan-antagonist, PA452, or transfected with RXR alpha small interfering RNA (siRNA). The RXR pan-antagonist and RXR alpha siRNA reduced the ability of retinol to decrease beta-catenin protein levels. Nuclear beta-catenin induces gene transcription via interaction with T cell factor/lymphoid enhancer factor (TCF/LEF) proteins. Retinol treatment decreased the transcription of a TOPFIash reporter construct and mRNA levels of the endogenous beta-catenin target genes, cyclin D1 and c-myc. These results indicate that retinol may reduce colon cancer cell growth by increasing the proteasomal degradation of beta-catenin via a mechanism potentially involving RXR. (c) 2007 Wiley-Liss, Inc.

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