Literature DB >> 28150143

IutB participates in the ferric-vulnibactin utilization system in Vibrio vulnificus M2799.

Hiroaki Kawano1, Katsushiro Miyamoto1, Miho Negoro1, Eriko Zushi1, Takahiro Tsuchiya1, Tomotaka Tanabe2, Tatsuya Funahashi2, Hiroshi Tsujibo3.   

Abstract

Vibrio vulnificus, an opportunistic pathogen that causes a serious, often fatal, infection in humans, requires iron for its growth. This bacterium utilizes iron from the environment via the vulnibactin-mediated iron uptake system. The mechanisms of vulnibactin biosynthesis, vulnibactin export, and ferric-vulnibactin uptake systems have been reported, whereas the ferric-vulnibactin reduction mechanism in the cell remains unclear. The results of our previous study showed that VuuB, a member of the flavin adenine dinucleotide-containing siderophore-interacting protein family, is a ferric-vulnibactin reductase, but there are other reductases that can complement for the defective vuuB. The aim of this study was to identify these proteins that can complement the loss of function of VuuB. We constructed mutants of genes encoding putative reductases in V. vulnificus M2799, and analyzed their growth under low-iron conditions. Complementation analyses confirmed that IutB, which functions as a ferric-aerobactin reductase, participates in ferric-vulnibactin reduction in the absence of VuuB. This is the first genetic evidence that ferric-vulnibactin is reduced by a member of the ferric-siderophore reductase protein family. In the aerobactin-utilization system, IutB plays a major role in ferric-aerobactin reduction in V. vulnificus M2799, and VuuB and DesB can compensate for the defect of IutB. Furthermore, the expression of iutB and desB was found to be regulated by iron and a ferric uptake regulator.

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Keywords:  Aerobactin; Clinical isolate; Desferrioxamine B; Ferric-siderophore reductase; Siderophore; Siderophore-interacting protein

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Year:  2017        PMID: 28150143     DOI: 10.1007/s10534-017-9994-0

Source DB:  PubMed          Journal:  Biometals        ISSN: 0966-0844            Impact factor:   2.949


  1 in total

Review 1.  Iron-Utilization System in Vibrio vulnificus M2799.

Authors:  Katsushiro Miyamoto; Hiroaki Kawano; Naoko Okai; Takeshi Hiromoto; Nao Miyano; Koji Tomoo; Takahiro Tsuchiya; Jun Komano; Tomotaka Tanabe; Tatsuya Funahashi; Hiroshi Tsujibo
Journal:  Mar Drugs       Date:  2021-12-17       Impact factor: 5.118

  1 in total

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