Amino acid residues critical for DNA binding and inducer recognition in CbnR, a LysR-type transcriptional regulator from Cupriavidus necator NH9

Author:

Moriuchi Ryota1,Takada Kaori2,Takabayashi Masae2,Yamamoto Yuko3,Shimodaira Jun3,Kuroda Naoko3,Akiyama Emiko3,Udagawa Mayumi4,Minai Ryoichi2,Fukuda Masao3,Senda Toshiya56,Ogawa Naoto12

Affiliation:

1. The United Graduate School of Agricultural Science, Gifu University, Gifu-shi, Japan

2. Faculty of Agriculture, Shizuoka University, Shizuoka-shi, Japan

3. Department of Bioengineering, Nagaoka University of Technology, Nagaoka, Japan

4. National Institute for Agro-Environmental Sciences, Tsukuba, Japan

5. Structural Biology Research Center, Photon Factory, Institute of Materials Structure Science, High Energy Accelerator Research Organization (KEK), Tsukuba, Japan

6. Department of Materials Structure Science, School of High Energy Accelerator Science, The Graduate University of Advanced Studies (Soken-dai), Tsukuba, Japan

Abstract

Abstract CbnR, a LysR-type transcriptional regulator from Cupriavidus necator NH9, activates the transcription of chlorocatechol-degradative enzymes. To activate the transcription, CbnR needs to bind not only to the cbnA promoter but also to the inducer. In this study, the transcriptional activity and DNA-binding activity of twenty-five mutants of CbnR were analyzed. Of the 17 mutants of the DNA-binding domain, 11 mutants lost their ability to activate transcription. While most mutants without transcriptional activation did not show DNA-binding activity, Asn17Ala, Gln29Ala, and Pro30Ala retained DNA-binding activity, suggesting that transcriptional activation by CbnR requires more than its binding to promoter DNA. Of the 8 mutants of the regulatory domain, 6 mutants changed their responses to the inducer, when compared with wild-type CbnR. Interestingly, Arg199Ala and Val246Ala induced constitutive expression of the cbnA promoter without the inducer, suggesting that these mutations brought about a conformational change mimicking that induced by the inducer molecule.

Funder

Japan Society for the Promotion of Science

JSPS KEKENHI (Grant-in-Aid for Scientific Research

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

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