Superoxide dismutases and glutaredoxins have a distinct role in the response of Candida albicans to oxidative stress generated by the chemical compounds menadione and diamide

被引:26
作者
Chaves, Guilherme Maranhao [1 ]
da Silva, Walicyranison Plinio [1 ]
机构
[1] Univ Fed Rio Grande do Norte, Lab Micol Med & Mol, Dept Anal Clin & Toxicol, Ctr Ciencias Saude, BR-59072970 Natal, RN, Brazil
来源
MEMORIAS DO INSTITUTO OSWALDO CRUZ | 2012年 / 107卷 / 08期
关键词
Candida albicans; superoxide dismutases; glutaredoxins; phagocytosis; virulence; HYDROGEN-PEROXIDE; SACCHAROMYCES-CEREVISIAE; BETA-GLUCAN; YEAST; GENE; VIRULENCE; EXPRESSION; CELLS; COLONIZATION; RECOGNITION;
D O I
10.1590/S0074-02762012000800006
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
To cope with oxidative stress, Candida albicans possesses several enzymes involved in a number of biological processes, including superoxide dismutases (Sods) and glutaredoxins (Grxs). The resistance of C. albicans to reactive oxygen species is thought to act as a virulence factor. Genes such as SOD1 and GRX2, which encode for a Sod and Grx, respectively, in C. albicans are widely recognised to be important for pathogenesis. We generated a double mutant, Delta grx2/sod1, for both genes. This strain is very defective in hyphae formation and is susceptible to killing by neutrophils. When exposed to two compounds that generate reactive oxygen species, the double null mutant was susceptible to menadione and resistant to diamide. The reintegration of the SOD1 gene in the null mutant led to recovery in resistance to menadione, whereas reintegration of the GRX2 gene made the null mutant sensitive to diamide. Despite having two different roles in the responses to oxidative stress generated by chemical compounds, GRX2 and SOD1 are important for C. albicans pathogenesis because the double mutant Delta grx2/sod1 was very susceptible to neutrophil killing and was defective in hyphae formation in addition to having a lower virulence in an animal model of systemic infection.
引用
收藏
页码:998 / 1005
页数:8
相关论文
共 39 条
[1]   Overexpression of a hydrogen peroxide-resistant periplasmic Cu,Zn superoxide dismutase protects Escherichia coli from macrophage killing [J].
Battistoni, A ;
Donnarumma, G ;
Greco, R ;
Valenti, P ;
Rotilio, G .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 243 (03) :804-807
[2]   Superoxide Dismutases Are Involved in Candida albicans Biofilm Persistence against Miconazole [J].
Bink, Anna ;
Vandenbosch, Davy ;
Coenye, Tom ;
Nelis, Hans ;
Cammue, Bruno P. A. ;
Thevissen, Karin .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2011, 55 (09) :4033-4037
[3]   Ectopic expression of URA3 can influence the virulence phenotypes and proteome of Candida albicans but can be overcome by targeted reintegration of URA3 at the RPS10 locus [J].
Brand, A ;
MacCallum, DM ;
Brown, AJP ;
Gow, NAR ;
Odds, FC .
EUKARYOTIC CELL, 2004, 3 (04) :900-909
[4]  
Cabiscol Elisa, 2000, International Microbiology, V3, P3
[5]  
Chaves GM, 2007, GENET MOL RES, V6, P1051
[6]   The persistence of multifocal colonisation by a single ABC genotype of Candida albicans may predict the transition from commensalism to infection [J].
Chaves, Guilherme Maranhao ;
Santos, Fernanda Pahim ;
Colombo, Arnaldo Lopes .
MEMORIAS DO INSTITUTO OSWALDO CRUZ, 2012, 107 (02) :198-204
[7]   Prospective observational study of candidemia in Sao Paulo, Brazil: Incidence rate, epidemiology, and predictors of mortality [J].
Colombo, Arnaldo L. ;
Guimaraes, Thais ;
Silva, Ligia R. B. F. ;
Monfardini, Leila Paula de Almeida ;
Cunha, Anna Karenine B. ;
Rady, Patricia ;
Alves, Thelma ;
Rosas, Robert C. .
INFECTION CONTROL AND HOSPITAL EPIDEMIOLOGY, 2007, 28 (05) :570-576
[8]  
FONZI WA, 1993, GENETICS, V134, P717
[9]   Granulocytes govern the transcriptional response, morphology and proliferation of Candida albicans in human blood [J].
Fradin, C ;
De Groot, P ;
MacCallum, D ;
Schaller, M ;
Klis, F ;
Odds, FC ;
Hube, B .
MOLECULAR MICROBIOLOGY, 2005, 56 (02) :397-415
[10]   Candida albicans cell surface superoxide dismutases degrade host-derived reactive oxygen species to escape innate immune surveillance [J].
Frohner, Ingrid E. ;
Bourgeois, Christelle ;
Yatsyk, Kristina ;
Majer, Olivia ;
Kuchler, Karl .
MOLECULAR MICROBIOLOGY, 2009, 71 (01) :240-252