Structural basis of transcription regulation by CNC family transcription factor, Nrf2

Author:

Sengoku Toru1ORCID,Shiina Masaaki1,Suzuki Kae1,Hamada Keisuke1,Sato Ko1,Uchiyama Akiko1,Kobayashi Shunsuke1,Oguni Asako1,Itaya Hayato2,Kasahara Kota2ORCID,Moriwaki Hirotomo3,Watanabe Chiduru34,Honma Teruki3,Okada Chikako1,Baba Shiho1,Ohta Tsutomu5,Motohashi Hozumi6ORCID,Yamamoto Masayuki7,Ogata Kazuhiro1

Affiliation:

1. Department of Biochemistry, Yokohama City University Graduate School of Medicine , Yokohama 236-0004, Japan

2. College of Life Sciences, Ritsumeikan University , Kusatsu 525-8577, Japan

3. RIKEN Center for Biosystems Dynamics Research , Yokohama 230-0045, Japan

4. JST PRESTO , Yokohama 230-0045, Japan

5. Department of Physical Therapy, Faculty of Health and Medical Sciences, Tokoha University , Hamamatsu 431-2102, Japan

6. Department of Gene Expression Regulation, Institute of Development, Aging, and Cancer, Tohoku University , Sendai 980-8575, Japan

7. Department of Integrative Genomics, Tohoku Medical Megabank Organization, Tohoku University , Sendai 980-8575, Japan

Abstract

Abstract Several basic leucine zipper (bZIP) transcription factors have accessory motifs in their DNA-binding domains, such as the CNC motif of CNC family or the EHR motif of small Maf (sMaf) proteins. CNC family proteins heterodimerize with sMaf proteins to recognize CNC–sMaf binding DNA elements (CsMBEs) in competition with sMaf homodimers, but the functional role of the CNC motif remains elusive. In this study, we report the crystal structures of Nrf2/NFE2L2, a CNC family protein regulating anti-stress transcriptional responses, in a complex with MafG and CsMBE. The CNC motif restricts the conformations of crucial Arg residues in the basic region, which form extensive contact with the DNA backbone phosphates. Accordingly, the Nrf2–MafG heterodimer has approximately a 200-fold stronger affinity for CsMBE than canonical bZIP proteins, such as AP-1 proteins. The high DNA affinity of the CNC–sMaf heterodimer may allow it to compete with the sMaf homodimer on target genes without being perturbed by other low-affinity bZIP proteins with similar sequence specificity.

Funder

JSPS KAKENHI

Daiichi Sankyo Foundation of Life Science

Takeda Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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