| Literature DB >> 29432914 |
Hiroaki Kawano1, Katsushiro Miyamoto1, Megumi Yasunobe1, Masahiro Murata1, Eri Yamahata1, Ryo Yamaguchi1, Yuta Miyaki1, Takahiro Tsuchiya1, Tomotaka Tanabe2, Tatsuya Funahashi2, Hiroshi Tsujibo3.
Abstract
Vibrio vulnificus, the causative agent of serious, often fatal, infections in humans, requires iron for its pathogenesis. As such, it obtains iron via both vulnibactin and heme-mediated iron-uptake systems. In this study, we identified the heme acquisition system in V. vulnificus M2799. The nucleotide sequences of the genes encoding heme receptors HupA and HvtA and the ATP-binding cassette (ABC) transport system proteins HupB, HupC, and HupD were determined, and then used in the construction of deletion mutants developed from a Δics strain, which could not synthesize vulnibactin. Growth experiments using these mutants indicated that HupA and HvtA are major and minor heme receptors, respectively. The expressions of two proteins were analyzed by the quantitative reverse-transcriptase polymerase chain reaction (qRT-PCR). Furthermore, complementation analyses confirmed that the HupBCD proteins are the only ABC transport system shared by both the HupA and HvtA receptors. This is the first genetic evidence that the HupBCD proteins are essential for heme acquisition by V. vulnificus. Further investigation showed that hupA, hvtA, and hupBCD are regulated by Fur. The qRT-PCR analysis of the heme receptor genes revealed that HupR, a LysR-family positive transcriptional activator, upregulates the expression of hupA, but not hvtA. In addition, ptrB was co-transcribed with hvtA, and PtrB had no influence on growth in low-iron CM9 medium supplemented with hemin, hemoglobin, or cytochrome C.Entities:
Keywords: ABC transporter; Clinical isolate; Hemin; Isochorismate synthase; Outer membrane protein; Periplasmic binding protein
Mesh:
Substances:
Year: 2018 PMID: 29432914 DOI: 10.1016/j.micpath.2018.02.022
Source DB: PubMed Journal: Microb Pathog ISSN: 0882-4010 Impact factor: 3.738