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Identification of Nrf2-regulated genes induced by the chemopreventive agent sulforaphane by oligonucleotide
Rajesh K Thimmulappa1, Kim H Mai, Sorachai Srisuma
1Department of Environmental Health Sciences, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MA 21205-2179, USA.
Abstract:
Electrophiles formed during metabolic activation of chemical carcinogens and reactive oxygen species generated from endogenous and exogenous sources play a significant role in carcinogenesis. Cancer chemoprevention by induction of phase 2 proteins to counteract the insults of these reactive intermediates has gained considerable attention. Nuclear factor E2 p45-related factor 2 (Nrf2), a bZIP transcription factor, plays a central role in the regulation (basal and or inducible expression) of phase 2 genes by binding to the "antioxidant response element" in their promoters. Identification of novel Nrf2-regulated genes is likely to provide insight into cellular defense systems against the toxicities of electrophiles and oxidants and may define effective targets for achieving cancer chemoprevention. Sulforaphane is a promising chemopreventive agent that exerts its effect by strong induction of phase 2 enzymes via activation of Nrf2. In the present study, a transcriptional profile of small intestine of wild-type (nrf2 +/+) and knock out (nrf2 -/-) mice treated with vehicle or sulforaphane (9 micromol/day for 1 week, p.o.) was generated using the Murine Genome U74Av2 oligonucleotide array (representing approximately 6000 well-characterized genes and nearly 6000 expressed sequence tags). Comparative analysis of gene expression changes between different treatment groups of wild-type and nrf2-deficient mice facilitated identification of numerous genes regulated by Nrf2 including previously reported Nrf2-regulated genes such as NAD(P)H:quinone reductase (NQO1), glutathione S-transferase (GST), gamma-glutamylcysteine synthetase (GCS), UDP-glucuronosyltransferases (UGT),epoxide hydrolase, as well as a number of new genes. Also identified were genes encoding for cellular NADPH regenerating enzymes (glucose 6-phosphate dehydrogenase, 6-phosphogluconate dehydrogenase, and malic enzyme), various xenobiotic metabolizing enzymes, antioxidants (glutathione peroxidase, glutathione reductase, ferritin, and haptaglobin), and biosynthetic enzymes of the glutathione and glucuronidation conjugation pathways. The data were validated by Northern blot analysis and enzyme assays of selected genes. This investigation expands the horizon of Nrf2-regulated genes, highlights the cross-talk between various metabolic pathways, and divulges the pivotal role played by Nrf2 in regulating cellular defenses against carcinogens and other toxins.
Insights
This study identifies new genes regulated by Nrf2, a key protein in cellular defense against toxins. Sulforaphane activates Nrf2, enhancing the expression of these genes for cancer chemoprevention.
Area of Science:
- Molecular Biology
- Biochemistry
- Cancer Research
Background:
- Carcinogenesis involves electrophiles and reactive oxygen species, necessitating cellular defense mechanisms.
- Cancer chemoprevention strategies focus on inducing phase 2 proteins to counteract these harmful agents.
- Nuclear factor E2 p45-related factor 2 (Nrf2) is a crucial transcription factor regulating phase 2 gene expression.
Purpose of the Study:
- To identify novel Nrf2-regulated genes involved in cellular defense systems.
- To understand the role of Nrf2 in regulating genes against electrophilic and oxidative stress.
- To explore sulforaphane's chemopreventive effects through Nrf2 activation.
Main Methods:
- Gene expression profiling in the small intestine of wild-type and Nrf2 knockout mice using Murine Genome U74Av2 oligonucleotide arrays.
- Treatment of mice with sulforaphane or vehicle.
- Validation of gene expression data through Northern blot analysis and enzyme assays.
Main Results:
- Identified numerous Nrf2-regulated genes, including known ones (NQO1, GST, GCS, UGT) and novel genes.
- Discovered Nrf2 regulates genes involved in NADPH regeneration, xenobiotic metabolism, and antioxidant pathways.
- Highlighted the regulation of glutathione and glucuronidation conjugation pathway enzymes by Nrf2.
Conclusions:
- This study significantly expands the known repertoire of Nrf2-regulated genes.
- Nrf2 plays a pivotal role in orchestrating cellular defense mechanisms against carcinogens and toxins.
- The findings provide insights into potential targets for cancer chemoprevention strategies.
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