Literature DB >> 20817113

Functional analysis and subcellular location of two flavohemoglobins from Aspergillus oryzae.

Shengmin Zhou1, Shinya Fushinobu, Sang-Wan Kim, Yoshito Nakanishi, Jun-ichi Maruyama, Katsuhiko Kitamoto, Takayoshi Wakagi, Hirofumi Shoun.   

Abstract

Multiple flavohemoglobin (FHb) homolog genes are found in the genomes of eukaryotic microorganisms, but their functions remain unknown. In this study, two distinct types of FHbs (predictive cytosolic FHb1 and predictive mitochondrial FHb2) from the fungus Aspergillus oryzae were investigated to elucidate the physiological roles of these FHbs. The fhb1 gene responded to external nitric oxide (NO) stress at the transcriptional level, whereas the fhb2 gene did not. Disrupting fhb1 increased cell hypersensitivity to NO stress, whereas deficiency of the fhb2 gene had no effect on phenotype compared to the wild-type strain. By fusing GFP protein to FHbs, we determined that FHb1 and FHb2 are located in the cytosol and mitochondria, respectively. In the wild-type strain, the transcriptional level of the fhb2 gene was too low to be detected, but its expression was detectable in the NirK (mitochondrial copper-containing dissimilatory nitrite reductase) overexpression strain (AoHnirK), which showed a significantly higher denitrification capability than that shown by the wild-type strain. The induction of the fhb2 gene in the AoHnirK strain may be due to the abundance of NO produced by overexpressed NirK in the mitochondria. These results suggest that FHb1 and FHb2 may play a role in protecting cells from external and internal NO stress, respectively.
Copyright © 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20817113     DOI: 10.1016/j.fgb.2010.08.011

Source DB:  PubMed          Journal:  Fungal Genet Biol        ISSN: 1087-1845            Impact factor:   3.495


  10 in total

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Journal:  Genome Biol       Date:  2017-02-14       Impact factor: 13.583

2.  Heme-biosynthetic porphobilinogen deaminase protects Aspergillus nidulans from nitrosative stress.

Authors:  Shengmin Zhou; Toshiaki Narukami; Misuzu Nameki; Tomoko Ozawa; Yosuke Kamimura; Takayuki Hoshino; Naoki Takaya
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3.  NO-inducible nitrosothionein mediates NO removal in tandem with thioredoxin.

Authors:  Shengmin Zhou; Toshiaki Narukami; Shunsuke Masuo; Motoyuki Shimizu; Tomoya Fujita; Yuki Doi; Yosuke Kamimura; Naoki Takaya
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4.  HGT in the human and skin commensal Malassezia: A bacterially derived flavohemoglobin is required for NO resistance and host interaction.

Authors:  Giuseppe Ianiri; Marco A Coelho; Fiorella Ruchti; Florian Sparber; Timothy J McMahon; Ci Fu; Madison Bolejack; Olivia Donovan; Hayden Smutney; Peter Myler; Fred Dietrich; David Fox; Salomé LeibundGut-Landmann; Joseph Heitman
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Review 5.  Insights into the cellular responses to hypoxia in filamentous fungi.

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Review 6.  Heme biosynthesis and its regulation: towards understanding and improvement of heme biosynthesis in filamentous fungi.

Authors:  Angelique C W Franken; B Christien Lokman; Arthur F J Ram; Peter J Punt; Cees A M J J van den Hondel; Sandra de Weert
Journal:  Appl Microbiol Biotechnol       Date:  2011-06-18       Impact factor: 4.813

7.  A phylogenetic analysis of the globins in fungi.

Authors:  David Hoogewijs; Sylvia Dewilde; Andy Vierstraete; Luc Moens; Serge N Vinogradov
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Review 8.  Hemoglobin: a nitric-oxide dioxygenase.

Authors:  Paul R Gardner
Journal:  Scientifica (Cairo)       Date:  2012-12-19

9.  ChIP-seq and in vivo transcriptome analyses of the Aspergillus fumigatus SREBP SrbA reveals a new regulator of the fungal hypoxia response and virulence.

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10.  Characterization of the Aspergillus fumigatus detoxification systems for reactive nitrogen intermediates and their impact on virulence.

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  10 in total

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