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September 1, 2002Journal of Biological Chemistry364 citationsOpen Access

The Keap1 BTB/POZ Dimerization Function Is Required to Sequester Nrf2 in Cytoplasm

LZLaurie M. ZipperRMRíona Mulcahy

Key Points

  • This study aims to investigate the role of Keap1 dimerization in sequestering Nrf2 in the cytoplasm.
  • Examined the impact of a conserved serine mutation (S104A) in the Keap1 BTB/POZ domain on Nrf2 sequestration.
  • Utilized dominant negative proteins to disrupt endogenous Keap1 dimerization.
  • Assessed effects of electrophilic agents on Keap1 complex formation and Nrf2 release.
  • Keap1 dimerization disruption via S104A mutation prevents Nrf2 sequestration and represses its transactivation.
  • Inhibition of Keap1 dimerization with BTB/POZ proteins leads to reduced retention of Nrf2 in the cytoplasm.
  • Electrophilic agents trigger Nrf2 release by disrupting Keap1 dimerization in vivo.

Abstract

Transactivation of phase II detoxification enzymes and antioxidant proteins is mediated by the Cap'N'Collar transcription factor, Nrf2, which is sequestered in the cytoplasm by the actin-binding protein Keap1. Mutation of a conserved serine (S104A) within the Keap1 BTB/POZ domain disrupts Keap1 dimerization and eliminates the ability of Keap1 to sequester Nrf2 in the cytoplasm and repress Nrf2 transactivation. Disruption of endogenous Keap1 dimerization using BTB/POZ dominant negative proteins also inhibits the ability of Keap1 to retain Nrf2 in the cytoplasm. Exposure to an electrophilic agent that induces Nrf2 release and nuclear translocation disrupts formation of a Keap1 complex in vivo. Collectively, these data support the conclusion that Keap1 dimerization is required for Nrf2 sequestration and transcriptional repression. Furthermore, exposure to inducing agents disrupts the Keap1 dimerization function and results in Nrf2 release.

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Cite This Study

Zipper et al. (2002) studied this question.

synapsesocial.com/papers/6a08871fef79633196e8bf23https://doi.org/10.1074/jbc.m206530200
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