Involvement of CarA/LitR and CRP/FNR Family Transcriptional Regulators in Light-Induced Carotenoid Production in Thermus thermophilus

Author:

Takano Hideaki1,Kondo Masato1,Usui Noriyoshi1,Usui Toshimitsu1,Ohzeki Hiromichi1,Yamazaki Ryuta1,Washioka Misato2,Nakamura Akira2,Hoshino Takayuki2,Hakamata Wataru3,Beppu Teruhiko1,Ueda Kenji1

Affiliation:

1. Life Science Research Center, College of Bioresource Sciences, Nihon University, Fujisawa

2. Division of Integrative Environmental Sciences, Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba

3. Department of Chemistry and Life Science, College of Bioresource Sciences, Nihon University, Fujisawa, Japan

Abstract

ABSTRACT Members of the CarA/LitR family are MerR-type transcriptional regulators that contain a C-terminal cobalamin-binding domain. They are thought to be involved in light-induced transcriptional regulation in a wide variety of nonphototrophic bacteria. Based on the distribution of this kind of regulator, the current study examined carotenoid production in Thermus thermophilus , and it was found to occur in a light-induced manner. litR and carotenoid and cobalamin biosynthesis genes were all located on the large plasmid of this organism. litR or cobalamin biosynthesis gene knockout mutants were unable to switch off carotenoid production under dark conditions, while a mutant with a mutation in the downstream gene adjacent to litR (TT_P0055), which encodes a CRP/FNR family transcriptional regulator, was unable to produce carotenoids, irrespective of light conditions. Overall, genetic and biochemical evidence indicates that LitR is bound by cobalamin and associates with the intergenic promoter region between litR and crtB (phytoene synthase gene), repressing the bidirectional transcription of litR and crtB . It is probable that derepression of LitR caused by some photodependent mechanism induces the expression of TT_P0055 protein, which serves as a transcriptional activator for the crtB operon and hence causes the expression of carotenoid biosynthesis and the DNA repair system under light condition.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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