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Molecular mechanisms of the 2,3,7,8-tetrachlorodibenzo-p-dioxin-induced inverted U-shaped dose responsiveness in anchorage independent growth and cell proliferation of human breast epithelial cells with stem cell characteristics
Authors:Ahn Nam-Shik  Hu Hongbo  Park Jin-Sung  Park Joon-Suk  Kim Jong-Sik  An Sungwhan  Kong Gu  Aruoma Okezie I  Lee Yong-Soon  Kang Kyung-Sun
Affiliation:

aLaboratory of Stem Cell and Tumor Biology, Department of Veterinary Public Health, College of Veterinary Medicine, Seoul National University, San 56-1 Sillim-Dong, Kwanak-Gu, Seoul 151-742, Republic of Korea

bMicroarray Division, GenomicTree, Inc., Jonmin-Dong 461-6, Yusong-Gu, Daejon 305-390, Republic of Korea

cDepartment of Pathology, College of Medicine and Molecular Biomarker Research Center, Hanyang University, Seoul 133-791, Republic of Korea

dFaculty of Health and Social Care, London South Bank University, 103 Borough Road, London SE1 0AA, UK

Abstract:
Although 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) has a variety of carcinogenic and noncarcinogenic effects in experimental animals, its role in human carcinogenicity remain controversial. A simian virus 40-immortalized cell line from normal human breast epithelial cells with stem cells and luminal characteristics (M13SV1) was used to study whether TCDD can induce AIG positive colony formation and cause increased cell numbers in a inverted U-shaped dose–response manner. TCDD activated Akt, ERK2, and increased the expression of CYP1A1, PAI-2, IL-lb mRNA, and ERK2 protein levels. TCDD was able to increased phosphorylation and expression of ERK2 in same dose–response manner as AIG positive colony formation. Thus, TCDD induced tumorigenicity in M13SV1, possibly through the phosphorylation of ERK2 and/or Akt. Further, cDNA microarray with 7448 sequence-verified clones was used to profile various gene expression patterns after treatment of TCDD. Three clear patterns could be delineated: genes that were dose-dependently up-regulated, genes expressed in either U-shape and/or inverted U-shape. The fact that these genes are intrinsically related to breast epithelial cell proliferation and survival clearly suggests that they may be involved in the TCDD-induced breast tumorigenesis.
Keywords:Dioxin   TCDD   Human breast cancer   Anchorage independent growth   Breast tumorigenesis   Inverted U-shaped responsiveness   MAP kinase   Cell signaling
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