Molecular Cancer Therapeutics
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Mol Cancer Ther. 2005;4:233-241
© 2005 American Association for Cancer Research

Gene expression profiling identifies activating transcription factor 3 as a novel contributor to the proapoptotic effect of curcumin

Chunhong Yan1, Md. S. Jamaluddin1, Bharat Aggarwal2, Jeffrey Myers3 and Douglas D. Boyd1

Departments of 1 Cancer Biology, 2 Bioimmunotherapy, and 3 Head and Neck Surgery, University of Texas, M.D. Anderson Cancer Center, Houston, Texas

Douglas D. Boyd, Department of Cancer Biology, Box 173, M.D. Anderson Cancer Center, Houston, TX 77030. E-mail: dboyd{at}mdanderson.org

The antitumor effect of curcumin (diferuloylmethane) is well established. However, there have been no unbiased studies to identify novel molecular targets of this compound. We therefore undertook a gene expression profiling study to identify novel targets of curcumin. A cDNA array comprised of 12,625 probes was used to compare total RNA extracted from curcumin-treated and untreated MDA-1986 cells for differential gene expression. We identified 202 up-regulated mRNAs and 505 transcripts decreased ≥2-fold. The proapoptotic activating transcription factor 3 (ATF3) was induced >4-fold. Two negative regulators of growth control [antagonizer of myc transcriptional activity (Mad) and p27kip1] were induced 68- and 3-fold, respectively. Additionally, two dual-activity phosphatases (CL 100 and MKP-5), which inactivate the c-jun-NH2-kinases, showed augmented expression, coinciding with reduced expression of the upstream activators of c-jun-NH2-kinase (MEKK and MKK4). Of the repressed genes, the expression of Frizzled-1 (Wnt receptor) was most strongly attenuated (8-fold). Additionally, two genes implicated in growth control (K-sam, encoding the keratinocyte growth factor receptor, and HER3) as well as the E2F-5 transcription factor, which regulates genes controlling cell proliferation, also showed down-regulated expression. Considering its role in apoptosis, we determined the contribution of ATF3 to the antitumor effect of curcumin. Curcumin-treated MDA-1986 cells showed a rapid, dose-dependent increase in ATF3/mRNA protein. Moreover, expression of an exogenous ATF3 cDNA synergized with curcumin in inducing apoptosis. Thus, we have identified several putative, novel molecular targets of curcumin and showed that one, (ATF3) contributes to the proapoptotic effects of this compound.


Grant support: NIH grants R01 CA58311, CA89002, and DE10845 (D. Boyd) and P50-CA097007 (J. Myers and B. Aggarwal).

The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore be hereby marked advertisement in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

Received 6/29/04; revised 11/22/04; accepted 11/30/04.







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Copyright © 2005 by the American Association for Cancer Research.