An archaeal transcription factor EnfR with a novel ‘eighth note’ fold controls hydrogen production of a hyperthermophilic archaeon Thermococcus onnurineus NA1

Author:

Bae Da-Woon1,Lee Seong Hyuk2,Park Ji Hye3,Son Se-Young1,Lin Yuxi4,Lee Jung Hyen3,Jang Bo-Ram5,Lee Kyu-Ho5ORCID,Lee Young-Ho4678,Lee Hyun Sook29,Kang Sung Gyun29,Kim Byoung Sik3,Cha Sun-Shin1ORCID

Affiliation:

1. Department of Chemistry & Nanoscience, Ewha Womans University , Seoul  03760 , Republic of Korea

2. Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology , Busan , South Korea

3. Department of Food Science and Biotechnology, Ewha Womans University , Seoul  03760 , Republic of Korea

4. Research Center for Bioconvergence Analysis, Korea Basic Science Institute (KBSI) , Cheongju , Chungbuk  28119 , Republic of Korea

5. Department of Life Science, Sogang University , 35 Baekbeom-Ro, Mapo-Gu, Seoul , South Korea

6. Bio-Analytical Science, University of Science and Technology , Daejeon  34113 , Republic of Korea

7. Department of Systems Biotechnology, Chung-Ang University , Anseong , Gyeonggi  17546 , Republic of Korea

8. Frontier Research Institute for Interdisciplinary Sciences, Tohoku University , Sendai , Miyagi  980-8578 , Japan

9. Department of Marine Biotechnology, KIOST School, University of Science and Technology , Daejeon , South Korea

Abstract

Abstract Thermococcus onnurineus NA1, a hyperthermophilic carboxydotrophic archaeon, produces H2 through CO oxidation catalyzed by proteins encoded in a carbon monoxide dehydrogenase (CODH) gene cluster. TON_1525 with a DNA-binding helix-turn-helix (HTH) motif is a putative repressor regulating the transcriptional expression of the codh gene cluster. The T55I mutation in TON_1525 led to enhanced H2 production accompanied by the increased expression of genes in the codh cluster. Here, TON_1525 was demonstrated to be a dimer. Monomeric TON_1525 adopts a novel ‘eighth note’ symbol-like fold (referred to as ‘eighth note’ fold regulator, EnfR), and the dimerization mode of EnfR is unique in that it has no resemblance to structures in the Protein Data Bank. According to footprinting and gel shift assays, dimeric EnfR binds to a 36-bp pseudo-palindromic inverted repeat in the promoter region of the codh gene cluster, which is supported by an in silico EnfR/DNA complex model and mutational studies revealing the implication of N-terminal loops as well as HTH motifs in DNA recognition. The DNA-binding affinity of the T55I mutant was lowered by ∼15-fold, for which the conformational change of N-terminal loops is responsible. In addition, transcriptome analysis suggested that EnfR could regulate diverse metabolic processes besides H2 production.

Funder

Development of potential antibiotic compounds using polar organism resources

Korea Institute of Ocean Science and Technology

National Research Foundation of Korea

National Research Council of Science and Technology

MSIT

Publisher

Oxford University Press (OUP)

Subject

Genetics

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