Benzene has been shown to be hematotoxic, genotoxic, and carcinogenic in some industrial workers exposed to high levels. Although many studies have shown that benzene causes several hematopoietic disorders, such as leukemias in humans, the mechanism of benzene-induced hematotoxicity and carcinogenicity is poorly understood. In humans, loss of NAD(P)H: quinone oxidoreductase-1 (NQO1) is associated with an increased incidence of benzene poisoning and leukemias. NQO1 detoxifies the proposed hematotoxic metabolite of benzene. Certain ethnic populations, such as Asians, have a high rate of a polymorphism in exon 6 of the NQO1 gene leading to loss of NQO1 activity. NQO1 has recently been shown to be involved in regulating p53, a tumor suppressor gene involved in DNA damage response pathways, by inhibiting its degradation. Our laboratory has previously shown that some of the genes involved in the p53 response pathway, such as cell cycle and apoptosis, are altered in benzene-exposed mice. The hypothesis to be addressed in this study is that NQO 1 deficiency leads to enhanced benzene-induced hematotoxicity and genotoxicity. Mice lacking functional NQO1 with exon 6 deleted from the NQO1 gene have been developed. The proposed studies will expose NQO1-/- and wild-type mice to inhaled benzene in a time- and dose-dependent manner to determine: (1) the susceptibility of NQO1-/- mice to benzene-induced hematotoxicity compared to wild-type mice, and (2) the p53 DNA damage response in NQO1-/- vs. wild-type mice in response to benzene. The ultimate goal of this study is to attain a better understanding of the mechanism of benzene hematotoxicity to develop biomarkers to identify those individuals more genetically susceptible to benzene.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Postdoctoral Individual National Research Service Award (F32)
Project #
1F32ES011424-01
Application #
6445330
Study Section
Special Emphasis Panel (ZRG1-SSS-3 (20))
Program Officer
Shreffler, Carol K
Project Start
2001-12-01
Project End
2002-06-07
Budget Start
2001-12-01
Budget End
2002-06-07
Support Year
1
Fiscal Year
2001
Total Cost
$17,418
Indirect Cost
Name
The Hamner Institutes
Department
Type
DUNS #
040052250
City
Research Triangle Park
State
NC
Country
United States
Zip Code
27709
Bauer, Alison K; Faiola, Brenda; Abernethy, Diane J et al. (2003) Genetic susceptibility to benzene-induced toxicity: role of NADPH: quinone oxidoreductase-1. Cancer Res 63:929-35
Bauer, Alison K; Faiola, Brenda; Abernethy, Diane J et al. (2003) Male mice deficient in microsomal epoxide hydrolase are not susceptible to benzene-induced toxicity. Toxicol Sci 72:201-9