Literature DB >> 17168675

Chemopreventive agents alters global gene expression pattern: predicting their mode of action and targets.

Bhagavathi A Narayanan1.   

Abstract

Chemoprevention has the potential to be a major component of colon, breast, prostate and lung cancer control. Epidemiological, experimental, and clinical studies provide evidence that antioxidants, anti-inflammatory agents, n-3 polyunsaturated fatty acids and several other phytochemicals possess unique modes of action against cancer growth. However, the mode of action of several of these agents at the gene transcription level is not completely understood. Completion of the human genome sequence and the advent of DNA microarrays using cDNAs enhanced the detection and identification of hundreds of differentially expressed genes in response to anticancer drugs or chemopreventive agents. In this review, we are presenting an extensive analysis of the key findings from studies using potential chemopreventive agents on global gene expression patterns, which lead to the identification of cancer drug targets. The summary of the study reports discussed in this review explains the extent of gene alterations mediated by more than 20 compounds including antioxidants, fatty acids, NSAIDs, phytochemicals, retinoids, selenium, vitamins, aromatase inhibitor, lovastatin, oltipraz, salvicine, and zinc. The findings from these studies further reveal the utility of DNA microarray in characterizing and quantifying the differentially expressed genes that are possibly reprogrammed by the above agents against colon, breast, prostate, lung, liver, pancreatic and other cancer types. Phenolic antioxidant resveratrol found in berries and grapes inhibits the formation of prostate tumors by acting on the regulatory genes such as p53 while activating a cascade of genes involved in cell cycle and apoptosis including p300, Apaf-1, cdk inhibitor p21, p57 (KIP2), p53 induced Pig 7, Pig 8, Pig 10, cyclin D, DNA fragmentation factor 45. The group of genes significantly altered by selenium includes cyclin D1, cdk5, cdk4, cdk2, cdc25A and GADD 153. Vitamine D shows impact on p21(Waf1/Cip1) p27 cyclin B and cyclin A1. Genomic expression profile with vitamin D indicated differential expression of gene targets such as c-JUN, JUNB, JUND, FREAC-1/FoxF1, ZNF-44/KOX7, plectin, filamin, and keratin-13, involved in antiproliferative, differentiation pathways. The agent UBEIL has a remarkable effect on cyclin D1. Curcumin mediated NrF2 pathway significantly altered p21(Waf1/Cip1) levels. Aromatase inhibitors affected the expression of cyclin D1. Interestingly, few dietary compounds listed in this review also have effect on APC, cdk inhibitors p21(Waf1/Cip1) and p27. Tea polyphenol EGCG has a significant effect on TGF-beta expression, while several other earlier studies have shown its effect on cell cycle regulatory proteins. This review article reveals potential chemoprevention drug targets, which are mainly centered on cell cycle regulatory pathway genes in cancer.

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Year:  2006        PMID: 17168675     DOI: 10.2174/156800906779010218

Source DB:  PubMed          Journal:  Curr Cancer Drug Targets        ISSN: 1568-0096            Impact factor:   3.428


  20 in total

1.  Development of a whole-organism model to screen new compounds for sun protection.

Authors:  Yun-Hsin Wang; Chi-Chung Wen; Zhi-Shiang Yang; Chien-Chung Cheng; Jen-Ning Tsai; Chia-Chen Ku; Hsin-Ju Wu; Yau-Hung Chen
Journal:  Mar Biotechnol (NY)       Date:  2008-11-13       Impact factor: 3.619

Review 2.  Sustained proliferation in cancer: Mechanisms and novel therapeutic targets.

Authors:  Mark A Feitelson; Alla Arzumanyan; Rob J Kulathinal; Stacy W Blain; Randall F Holcombe; Jamal Mahajna; Maria Marino; Maria L Martinez-Chantar; Roman Nawroth; Isidro Sanchez-Garcia; Dipali Sharma; Neeraj K Saxena; Neetu Singh; Panagiotis J Vlachostergios; Shanchun Guo; Kanya Honoki; Hiromasa Fujii; Alexandros G Georgakilas; Alan Bilsland; Amedeo Amedei; Elena Niccolai; Amr Amin; S Salman Ashraf; Chandra S Boosani; Gunjan Guha; Maria Rosa Ciriolo; Katia Aquilano; Sophie Chen; Sulma I Mohammed; Asfar S Azmi; Dipita Bhakta; Dorota Halicka; W Nicol Keith; Somaira Nowsheen
Journal:  Semin Cancer Biol       Date:  2015-04-17       Impact factor: 15.707

3.  Environmental arsenic exposure, selenium and sputum alpha-1 antitrypsin.

Authors:  Jefferey L Burgess; Margaret Kurzius-Spencer; Gerald S Poplin; Sally R Littau; Michael J Kopplin; Stefan Stürup; Scott Boitano; R Clark Lantz
Journal:  J Expo Sci Environ Epidemiol       Date:  2013-07-10       Impact factor: 5.563

4.  Identification of modulated genes by three classes of chemopreventive agents at preneoplastic stages in a p53-null mouse mammary tumor model.

Authors:  Martín C Abba; Yuhui Hu; Carla C Levy; Sally Gaddis; Frances S Kittrell; Jamal Hill; Reid P Bissonnette; Powel H Brown; Daniel Medina; C Marcelo Aldaz
Journal:  Cancer Prev Res (Phila)       Date:  2009-01-27

Review 5.  Potential roles of longan flower and seed extracts for anti-cancer.

Authors:  Chih-Cheng Lin; Yuan-Chiang Chung; Chih-Ping Hsu
Journal:  World J Exp Med       Date:  2012-08-20

6.  Anticancer effect of celecoxib via COX-2 dependent and independent mechanisms in human gastric cancers cells.

Authors:  Hua Liu; Peixin Huang; Xuanfu Xu; Jun Liu; Chuanyong Guo
Journal:  Dig Dis Sci       Date:  2008-10-16       Impact factor: 3.199

7.  Antioxidant and oncogene rescue of metabolic defects caused by loss of matrix attachment.

Authors:  Zachary T Schafer; Alexandra R Grassian; Loling Song; Zhenyang Jiang; Zachary Gerhart-Hines; Hanna Y Irie; Sizhen Gao; Pere Puigserver; Joan S Brugge
Journal:  Nature       Date:  2009-08-19       Impact factor: 49.962

8.  HIF-dependent antitumorigenic effect of antioxidants in vivo.

Authors:  Ping Gao; Huafeng Zhang; Ramani Dinavahi; Feng Li; Yan Xiang; Venu Raman; Zaver M Bhujwalla; Dean W Felsher; Linzhao Cheng; Jonathan Pevsner; Linda A Lee; Gregg L Semenza; Chi V Dang
Journal:  Cancer Cell       Date:  2007-09       Impact factor: 31.743

9.  Protandim, a fundamentally new antioxidant approach in chemoprevention using mouse two-stage skin carcinogenesis as a model.

Authors:  Jianfeng Liu; Xin Gu; Delira Robbins; Guohong Li; Runhua Shi; Joe M McCord; Yunfeng Zhao
Journal:  PLoS One       Date:  2009-04-22       Impact factor: 3.240

10.  Selenite Induces Cell Cycle Arrest and Apoptosis via Reactive Oxygen Species-Dependent Inhibition of the AKT/mTOR Pathway in Thyroid Cancer.

Authors:  Zhen Cheng; Shuang Yu; Weiman He; Jie Li; Tianyi Xu; Junyu Xue; Peijie Shi; Shuwei Chen; Yanbing Li; Shubin Hong; Haipeng Xiao
Journal:  Front Oncol       Date:  2021-05-21       Impact factor: 6.244

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