Literature DB >> 16690721

Endoxifen, a secondary metabolite of tamoxifen, and 4-OH-tamoxifen induce similar changes in global gene expression patterns in MCF-7 breast cancer cells.

Young Chai Lim1, Lang Li, Zeruesenay Desta, Qianqian Zhao, James M Rae, David A Flockhart, Todd C Skaar.   

Abstract

We recently demonstrated that endoxifen (4-hydroxy-N-desmethyl-tamoxifen), a pharmacogenetically regulated metabolite of tamoxifen, is equipotent to 4-hydroxy-tamoxifen (4-OH-Tam) with respect to estrogen receptor binding and inhibition of 17beta-estradiol (E2)-induced cell proliferation. Endoxifen was also found to be more abundant in human plasma than 4-OH-Tam, and its formation has been shown to be primarily catalyzed by cytochrome P450 2D6 (CYP2D6). Here, we report studies evaluating the effects of endoxifen, 4-OH-Tam, and E2 on gene expression in MCF-7 cells using Affymetrix U133A GeneChip Arrays (Santa Clara, CA). We detected 4062 genes that were E2-regulated (1924 induced; 2138 suppressed), and the ratio of E2-induced versus E2-suppressed genes was consistent regardless of the cutoff value. In the presence of E2, 2444 and 2390 genes were affected by 4-OH-Tam and endoxifen, respectively, when no minimal -fold change cutoff was implemented. The majority of genes regulated by the tamoxifen metabolites were also E2-responsive (74.4 and 73.3%, respectively). Endoxifen and 4-OH-Tam had overlapping effects on 1365 E2-sensitive genes, whose -fold effects between these metabolites were highly correlated (R2 = 0.99). A significant correlation was also found between the -fold effects of 249 E2-insensitive genes coregulated by both metabolites (R2 = 0.99). Hierarchical clustering analysis demonstrated similar gene regulation patterns between these metabolites, which were distinct from E2 or vehicle treatment patterns. Using real time-polymerase chain reaction, we validated the gene expression patterns of five genes that were differentially regulated by endoxifen and 4-OH-Tam. We conclude that endoxifen and 4-OH-Tam have similar effects on global gene expression patterns in MCF-7 cells and that the majority of the affected genes are estrogen-regulated genes.

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Year:  2006        PMID: 16690721     DOI: 10.1124/jpet.105.100511

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  57 in total

1.  Endoxifen and other metabolites of tamoxifen inhibit human hydroxysteroid sulfotransferase 2A1 (hSULT2A1).

Authors:  Edwin J Squirewell; Xiaoyan Qin; Michael W Duffel
Journal:  Drug Metab Dispos       Date:  2014-08-25       Impact factor: 3.922

Review 2.  CYP2D6 genotyping and tamoxifen: an unfinished story in the quest for personalized medicine.

Authors:  Jonas A de Souza; Olufunmilayo I Olopade
Journal:  Semin Oncol       Date:  2011-04       Impact factor: 4.929

Review 3.  The pharmacogenetics research network: from SNP discovery to clinical drug response.

Authors:  K M Giacomini; C M Brett; R B Altman; N L Benowitz; M E Dolan; D A Flockhart; J A Johnson; D F Hayes; T Klein; R M Krauss; D L Kroetz; H L McLeod; A T Nguyen; M J Ratain; M V Relling; V Reus; D M Roden; C A Schaefer; A R Shuldiner; T Skaar; K Tantisira; R F Tyndale; L Wang; R M Weinshilboum; S T Weiss; I Zineh
Journal:  Clin Pharmacol Ther       Date:  2007-03       Impact factor: 6.875

4.  Germline pharmacogenetics of tamoxifen response: have we learned enough?

Authors:  Zeruesenay Desta; David A Flockhart
Journal:  J Clin Oncol       Date:  2007-11-20       Impact factor: 44.544

5.  A randomized phase II presurgical trial of transdermal 4-hydroxytamoxifen gel versus oral tamoxifen in women with ductal carcinoma in situ of the breast.

Authors:  Oukseub Lee; Katherine Page; David Ivancic; Irene Helenowski; Vamsi Parini; Megan E Sullivan; Julie A Margenthaler; Robert T Chatterton; Borko Jovanovic; Barbara K Dunn; Brandy M Heckman-Stoddard; Kathleen Foster; Miguel Muzzio; Julia Shklovskaya; Silvia Skripkauskas; Piotr Kulesza; David Green; Nora M Hansen; Kevin P Bethke; Jacqueline S Jeruss; Raymond Bergan; Seema A Khan
Journal:  Clin Cancer Res       Date:  2014-07-15       Impact factor: 12.531

6.  Linking estrogen-induced apoptosis with decreases in mortality following long-term adjuvant tamoxifen therapy.

Authors:  V Craig Jordan
Journal:  J Natl Cancer Inst       Date:  2014-09-30       Impact factor: 13.506

Review 7.  New insights into the metabolism of tamoxifen and its role in the treatment and prevention of breast cancer.

Authors:  V Craig Jordan
Journal:  Steroids       Date:  2007-07-27       Impact factor: 2.668

Review 8.  Pharmacogenetics and pharmacogenomics of anticancer agents.

Authors:  R Stephanie Huang; Mark J Ratain
Journal:  CA Cancer J Clin       Date:  2009 Jan-Feb       Impact factor: 508.702

9.  Selective serotonin reuptake inhibitors and breast cancer mortality in women receiving tamoxifen: a population based cohort study.

Authors:  Catherine M Kelly; David N Juurlink; Tara Gomes; Minh Duong-Hua; Kathleen I Pritchard; Peter C Austin; Lawrence F Paszat
Journal:  BMJ       Date:  2010-02-08

10.  Novel Selective Estrogen Receptor Ligand Conjugates Incorporating Endoxifen-Combretastatin and Cyclofenil-Combretastatin Hybrid Scaffolds: Synthesis and Biochemical Evaluation.

Authors:  Patrick M Kelly; Niall O Keely; Sandra A Bright; Bassem Yassin; Gloria Ana; Darren Fayne; Daniela M Zisterer; Mary J Meegan
Journal:  Molecules       Date:  2017-08-31       Impact factor: 4.411

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