Dysfunctional KEAP1–NRF2 Interaction in Non-Small-Cell Lung Cancer
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Open Access
- 3 October 2006
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Medicine
- Vol. 3 (10), e420
- https://doi.org/10.1371/journal.pmed.0030420
Abstract
Nuclear factor erythroid-2 related factor 2 (NRF2) is a redox-sensitive transcription factor that positively regulates the expression of genes encoding antioxidants, xenobiotic detoxification enzymes, and drug efflux pumps, and confers cytoprotection against oxidative stress and xenobiotics in normal cells. Kelch-like ECH-associated protein 1 (KEAP1) negatively regulates NRF2 activity by targeting it to proteasomal degradation. Increased expression of cellular antioxidants and xenobiotic detoxification enzymes has been implicated in resistance of tumor cells against chemotherapeutic drugs. Here we report a systematic analysis of the KEAP1 genomic locus in lung cancer patients and cell lines that revealed deletion, insertion, and missense mutations in functionally important domains of KEAP1 and a very high percentage of loss of heterozygosity at 19p13.2, suggesting that biallelic inactivation of KEAP1 in lung cancer is a common event. Sequencing of KEAP1 in 12 cell lines and 54 non-small-cell lung cancer (NSCLC) samples revealed somatic mutations in KEAP1 in a total of six cell lines and ten tumors at a frequency of 50% and 19%, respectively. All the mutations were within highly conserved amino acid residues located in the Kelch or intervening region domain of the KEAP1 protein, suggesting that these mutations would likely abolish KEAP1 repressor activity. Evaluation of loss of heterozygosity at 19p13.2 revealed allelic losses in 61% of the NSCLC cell lines and 41% of the tumor samples. Decreased KEAP1 activity in cancer cells induced greater nuclear accumulation of NRF2, causing enhanced transcriptional induction of antioxidants, xenobiotic metabolism enzymes, and drug efflux pumps. This is the first study to our knowledge to demonstrate that biallelic inactivation of KEAP1 is a frequent genetic alteration in NSCLC. Loss of KEAP1 function leading to constitutive activation of NRF2-mediated gene expression in cancer suggests that tumor cells manipulate the NRF2 pathway for their survival against chemotherapeutic agents.Keywords
This publication has 38 references indexed in Scilit:
- Role of Nrf2 in the regulation of the Mrp2 (ABCC2) geneBiochemical Journal, 2006
- Nrf2 is a critical regulator of the innate immune response and survival during experimental sepsisJournal of Clinical Investigation, 2006
- Disruption of Nrf2 enhances susceptibility to severe airway inflammation and asthma in miceThe Journal of Experimental Medicine, 2005
- High‐resolution 19p13.2–13.3 allelotyping of breast carcinomas demonstrates frequent loss of heterozygosityGenes, Chromosomes and Cancer, 2004
- Nrf2 regulates the sensitivity of death receptor signals by affecting intracellular glutathione levelsOncogene, 2003
- Regulatory Mechanisms Controlling Gene Expression Mediated by the Antioxidant Response ElementAnnual Review of Pharmacology and Toxicology, 2003
- Expression of ?-glutamyl cysteine synthetase in nonsmall cell lung carcinomaCancer, 2001
- Expression of the Prothymosin-α Gene as a Prognostic Factor in Lung CancerSurgery Today, 2001
- Accelerated DNA Adduct Formation in the Lung of the Nrf2 Knockout Mouse Exposed to Diesel ExhaustToxicology and Applied Pharmacology, 2001
- Topoisomerase-targeting antitumor drugsBiochimica et Biophysica Acta (BBA) - Reviews on Cancer, 1989