TY - JOUR
T1 - Direct and specific functional evaluation of the Nrf2 and MafG heterodimer by introducing a tethered dimer into small maf-deficient cells
AU - Katsuoka, Fumiki
AU - Otsuki, Akihito
AU - Takahashi, Mizue
AU - Ito, Shin
AU - Yamamoto, Masayuki
N1 - Funding Information:
We thank Nozomi Hatanaka for her excellent technical support. This study was supported in part by the MEXT/JSPS KAKENHI, Grant-in-Aid for Scientific Research (C) 17K08617 (to F.K.), and Grant-in-Aid for Scientific Research (S) 19H05649 (to M.Y.). We declare no conflicts of interest.
Publisher Copyright:
Copyright © 2019 American Society for Microbiology. All Rights Reserved.
PY - 2019/10/1
Y1 - 2019/10/1
N2 - A group of cytoprotective genes is regulated by heterodimers composed of the cap'n'collar (CNC) family member Nrf2 and one of the small Maf (sMaf) proteins (MafF, MafG, or MafK) through the antioxidant response element (ARE, also referred to as the CNC-sMaf binding element [CsMBE]). Many lines of evidence support this model; however, a direct and specific evaluation of the Nrf2-sMaf heterodimer remains to be executed. To address this issue, we constructed a tethered Nrf2-MafG (T-N2G) heterodimer using a flexible linker peptide. We then introduced the T-N2G construct into cells lacking all three sMaf proteins to specifically evaluate the function of the tethered heterodimer without interference from other endogenous CNC-sMaf heterodimers or sMaf homodimers. In response to an Nrf2 activator, diethyl maleate, the T-N2G protein can widely activate the target genes of Nrf2 but not those of Nrf1, such as proteasome subunit genes. Genome-wide binding analysis showed that the T-N2G protein preferentially bound to the CsMBE motifs in the regulatory regions of the Nrf2 target genes. These results provide direct evidence that the Nrf2-MafG heterodimer acts as a transcriptional activator of Nrf2-dependent genes and show that this assay system will be a powerful tool to specifically examine the function of other CNC-sMaf heterodimers.
AB - A group of cytoprotective genes is regulated by heterodimers composed of the cap'n'collar (CNC) family member Nrf2 and one of the small Maf (sMaf) proteins (MafF, MafG, or MafK) through the antioxidant response element (ARE, also referred to as the CNC-sMaf binding element [CsMBE]). Many lines of evidence support this model; however, a direct and specific evaluation of the Nrf2-sMaf heterodimer remains to be executed. To address this issue, we constructed a tethered Nrf2-MafG (T-N2G) heterodimer using a flexible linker peptide. We then introduced the T-N2G construct into cells lacking all three sMaf proteins to specifically evaluate the function of the tethered heterodimer without interference from other endogenous CNC-sMaf heterodimers or sMaf homodimers. In response to an Nrf2 activator, diethyl maleate, the T-N2G protein can widely activate the target genes of Nrf2 but not those of Nrf1, such as proteasome subunit genes. Genome-wide binding analysis showed that the T-N2G protein preferentially bound to the CsMBE motifs in the regulatory regions of the Nrf2 target genes. These results provide direct evidence that the Nrf2-MafG heterodimer acts as a transcriptional activator of Nrf2-dependent genes and show that this assay system will be a powerful tool to specifically examine the function of other CNC-sMaf heterodimers.
KW - CsMBE
KW - Nrf2
KW - Small Maf
KW - Tethered molecule
KW - Transcription factor
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U2 - 10.1128/MCB.00273-19
DO - 10.1128/MCB.00273-19
M3 - Article
C2 - 31383749
AN - SCOPUS:85072717819
SN - 0270-7306
VL - 39
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 20
M1 - e00273-19
ER -