Literature DB >> 24987864

A systematic analysis reveals an essential role for high-affinity iron uptake system, haemolysin and CFEM domain-containing protein in iron homoeostasis and virulence in Candida glabrata.

Vivek Kumar Srivastava1, Korivi Jyothiraj Suneetha1, Rupinder Kaur1.   

Abstract

Iron is an essential nutrient for all living organisms and human pathogens employ a battery of factors to scavenge iron from the high-affinity iron-binding host proteins. In the present study, we have elucidated, via a candidate gene approach, major iron acquisition and homoeostatic mechanisms operational in an opportunistic human fungal pathogen Candida glabrata. Phenotypic, biochemical and molecular analysis of a set of 13 C. glabrata strains, deleted for proteins potentially implicated in iron metabolism, revealed that the high-affinity reductive iron uptake system is required for utilization of alternate carbon sources and for growth under both in vitro iron-limiting and in vivo conditions. Furthermore, we show for the first time that the cysteine-rich CFEM (common in fungal extracellular membranes) domain-containing cell wall structural protein, CgCcw14, and a putative haemolysin, CgMam3, are essential for maintenance of intracellular iron content, adherence to epithelial cells and virulence. Consistent with their roles in iron homoeostasis, mitochondrial aconitase activity was lower and higher in mutants disrupted for high-affinity iron transport, and haemolysin respectively. Additionally, we present evidence that the mitochondrial frataxin, CgYfh1, is pivotal to iron metabolism. Besides yielding insights into major in vitro and in vivo iron acquisition strategies, our findings establish high-affinity iron uptake mechanisms as critical virulence determinants in C. glabrata.

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Year:  2014        PMID: 24987864     DOI: 10.1042/BJ20140598

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  20 in total

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4.  The Phosphoinositide 3-Kinase Regulates Retrograde Trafficking of the Iron Permease CgFtr1 and Iron Homeostasis in Candida glabrata.

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6.  A Velvet Transcription Factor Specifically Activates Mating through a Novel Mating-Responsive Protein in the Human Fungal Pathogen Cryptococcus deneoformans.

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7.  Ferric ions accumulate in the walls of metabolically inactivating Saccharomyces cerevisiae cells and are reductively mobilized during reactivation.

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Review 8.  Iron-sulfur cluster signaling: The common thread in fungal iron regulation.

Authors:  Malini Gupta; Caryn E Outten
Journal:  Curr Opin Chem Biol       Date:  2020-03-29       Impact factor: 8.822

Review 9.  Strategies of Intracellular Pathogens for Obtaining Iron from the Environment.

Authors:  Nidia Leon-Sicairos; Ruth Reyes-Cortes; Alma M Guadrón-Llanos; Jesús Madueña-Molina; Claudia Leon-Sicairos; Adrian Canizalez-Román
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10.  A relay network of extracellular heme-binding proteins drives C. albicans iron acquisition from hemoglobin.

Authors:  Galit Kuznets; Elena Vigonsky; Ziva Weissman; Daniela Lalli; Tsvia Gildor; Sarah J Kauffman; Paola Turano; Jeffrey Becker; Oded Lewinson; Daniel Kornitzer
Journal:  PLoS Pathog       Date:  2014-10-02       Impact factor: 6.823

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