CYP2El catalyzes the bioactivation of low molecular weight environmental toxicants, procarcinogens, and therapeutic agents to reactive toxic and/or carcinogenic products and is capable of increasing cellular oxidative stress. Elevated CYP2El levels are associated with increased disease risk, especially in conjunction with xenobiotic exposure. CYP2El mRNA and protein levels are elevated in response to disease (e.g., diabetes), obesity, nutritional status, and alcoholism, and an increased incidence of liver disease and cancer has been reported in chronic alcoholics, and in obese and diabetic individuals. It is therefore of interest to examine the regulation of CYP2El expression by endogenous agents such as hormones, growth factors, and nutritional components. Recent experiments have shown that epidermal growth factor (EGF) negatively regulates CYP2El expression in primary cultured rat hepatocytes, a system in which individual growth factors or hormones can be studied free of the homeostatic control and other confounding endogenous agents present in vivo. EGF (1 - 50 ng/ml) decreased CYP2El mRNA levels by up to 85%, and preliminary studies suggest that a Src kinase, PI 3-kinase signaling pathway mediates the regulation of CYP2El expression. Mechanistic studies suggest that gene transcription and mRNA turnover are involved in the negative regulation of CYP2El by EGF, and gel shift studies implicate RNA-protein binding in CYP2El mRNA stabilization. The hypothesis of this research is that an EGF receptor-activated Src kinase, PI 3-kinase signaling pathway regulates CYP2El expression through transcriptional and post-transcriptional events, affecting mRNA storage and turnover. Thus, the specific aims of this research are 1) to examine the effects of Src kinase, PI 3-kinase system and p7O S6 kinase inhibitors on CYP2El transcription rates and mRNA turnover (stability) in the presence and absence of EGF and HGF in primary cultured rat hepatocytes; 2) to definitively assess, with dominant negative constructs of Src kinase, PI 3-kinase and Akt/Protein kinase B, the role of each of these kinases in the basal and EGF/HGF-mediated regulation of CYP2El expression in primary cultured hepatocytes; 3) to examine the role of cytosolic protein binding to CYP2El mRNA as a mechanism of EGF-mediated destabilization of CYP2El mRNA; and 4) to examine, by microarray analysis, the expression pattern of hepatic genes following treatment of primary cultured rat hepatocytes with EGF/HGF, and alterations in gene expression following treatment with EGF/HGF in the presence of the Src kinase, PI 3-kinase, and p7O S6 kinase inhibitors, and dominant negative kinase constructs. These experiments will hopefully provide a mechanistic understanding of the growth factor-mediated regulation of CYP2El, a gene product which increases the risk of disease associated with xenobiotic exposure.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Minority Biomedical Research Support Thematic Project Grants (S11)
Project #
5S11ES011182-02
Application #
6644974
Study Section
Special Emphasis Panel (ZES1)
Project Start
2002-08-01
Project End
2003-07-31
Budget Start
Budget End
Support Year
2
Fiscal Year
2002
Total Cost
Indirect Cost
Name
Florida Agricultural and Mechanical University
Department
Type
DUNS #
City
Tallahassee
State
FL
Country
United States
Zip Code
32307
McCaskill, Michael L; Rogan, Eleanor; Thomas, Ronald D (2014) Diallyl sulfide inhibits diethylstilbestrol induced DNA damage in human breast epithelial cells (MCF-10A). Steroids 92:96-100
Stephenson, Adrienne P; Schneider, Jeffrey A; Nelson, Bryant C et al. (2013) Manganese-induced oxidative DNA damage in neuronal SH-SY5Y cells: attenuation of thymine base lesions by glutathione and N-acetylcysteine. Toxicol Lett 218:299-307
Taka, Equar; Mazzio, Elizabeth; Soliman, Karam F A et al. (2012) Microarray genomic profile of mitochondrial and oxidant response in manganese chloride treated PC12 cells. Neurotoxicology 33:162-8
Musa, Musiliyu A; Cooperwood, John S; Khan, M Omar F et al. (2011) In-vitro antiproliferative activity of benzopyranone derivatives in comparison with standard chemotherapeutic drugs. Arch Pharm (Weinheim) 344:102-10
Musa, Musiliyu A; Khan, M Omar F; Cooperwood, John S (2009) Synthesis and antiproliferative activity of coumarin-estrogen conjugates against breast cancer cell lines. Lett Drug Des Discov 6:133-138
Musa, Musiliyu A; Cooperwood, John S; Khan, M Omar F (2008) A review of coumarin derivatives in pharmacotherapy of breast cancer. Curr Med Chem 15:2664-79
Green, Mario; Newell, Oneil; Aboyade-Cole, Ayoola et al. (2007) Diallyl sulfide induces the expression of estrogen metabolizing genes in the presence and/or absence of diethylstilbestrol in the breast of female ACI rats. Toxicol Lett 168:7-12
Nwagbara, Onyinye; Darling-Reed, Selina F; Tucker, Alicia et al. (2007) Induction of cell death, DNA strand breaks, and cell cycle arrest in DU145 human prostate carcinoma cell line by benzo[a]pyrene and benzo[a]pyrene-7,8-diol-9,10-epoxide. Int J Environ Res Public Health 4:10-4
Green, Mario; Newell, Oneil; Aboyade-Cole, Ayoola et al. (2007) Diallyl sulfide induces the expression of nucleotide excision repair enzymes in the breast of female ACI rats. Toxicol Lett 168:40-4
Wilson, Chantell; Aboyade-Cole, Ayoola; Newell, Oneil et al. (2007) Diallyl sulfide inhibits PhIP-induced DNA strand breaks in normal human breast epithelial cells. Oncol Rep 17:807-11

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