Inhibitory effects and mechanism of antifungal action of the natural cyclic depsipeptide, aureobasidin A against Cryptococcus neoformans

被引:11
作者
Teymuri, Mostafa [1 ]
Shams-Ghahfarokhi, Masoomeh [1 ]
Razzaghi-Abyaneh, Mehdi [2 ]
机构
[1] Tarbiat Modares Univ, Fac Med Sci, Dept Mycol, Tehran 14115331, Iran
[2] Pasteur Inst Iran, Dept Mycol, Tehran 1316943551, Iran
关键词
Cryptococcus neoformans; Antifungal activity; Aureobasidin A; Mechanism of action; Gene expression; Ergosterol content; ANTIMICROBIAL PEPTIDE; CANDIDA; SUSCEPTIBILITY; SPHINGOLIPIDS; ERGOSTEROL; GROWTH; CXT1P;
D O I
10.1016/j.bmcl.2021.128013
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Cryptococcosis is an opportunistic fungal infection caused mainly by Cryptococcus neoformans. The aim of the present study was to evaluate the inhibitory effect of aureobasidin A on C. neoformans with special focus on its mode of action. The effect of aureobasidin A on cell membrane ergosterol content, cell wall permeability, membrane pumps activities, the total oxidant status (TOS) and melanin production was evaluated. Cytotoxicity and cell hemolysis, and laccase (LacI) and beta 1,2-xylosyltransferase (Cxt1p) gene expression were also evaluated. Aureobasidin A reduced melanin production and increased extracellular potassium leakage at 0.5 x MIC concentration. This peptide has no effect on fungal cell wall integrity. Cell membrane ergosterol content was decreased by 29.1% and 41.8% at 0.5 x MIC and 1 x MIC concentrations (2 and 4 mu L/mL) in aureobasidin A treated samples, respectively. TOS level was significantly increased without activation of antioxidant enzymes. Lac1 gene was over-expressed (11.7-fold), while Cxt1p gene was down regulated (0.2-fold) following treatment with aureobasidin A. Overall, our results indicated that aureobasidin A inhibits C. neoformans growth by targeting different sites in fungal cells and it may be considered as a promising compound to use as an antifungal in treatment of clinical cryptococcosis.
引用
收藏
页数:7
相关论文
共 44 条
[1]   Virulence-Associated Enzymes of Cryptococcus neoformans [J].
Almeida, Fausto ;
Wolf, Julie M. ;
Casadevall, Arturo .
EUKARYOTIC CELL, 2015, 14 (12) :1173-1185
[2]  
[Anonymous], 1997, FEMS MICROBIOL LETT, V156, P171
[3]   Quantitation of ergosterol content:: Novel method for determination of fluconazole susceptibility of Candida albicans [J].
Arthington-Skaggs, BA ;
Jradi, H ;
Desai, T ;
Morrison, CJ .
JOURNAL OF CLINICAL MICROBIOLOGY, 1999, 37 (10) :3332-3337
[4]   β1,2-xylosyltransferase Cxt1p is solely responsible for xylose incorporation into Cryptococcus neoformans glycosphingolipids [J].
Castle, Sherry A. ;
Owuor, Elizabeth A. ;
Thompson, Stephanie H. ;
Garnsey, Michelle R. ;
Klutts, J. Stacey ;
Doering, Tamara L. ;
Levery, Steven B. .
EUKARYOTIC CELL, 2008, 7 (09) :1611-1615
[5]   Cryptococcus neoformans Phosphoinositide-Dependent Kinase 1 (PDK1) Ortholog Is Required for Stress Tolerance and Survival in Murine Phagocytes [J].
Chabrier-Rosello, Yeissa ;
Gerik, Kimberly J. ;
Koselny, Kristy ;
DiDone, Louis ;
Lodge, Jennifer K. ;
Krysan, Damian J. .
EUKARYOTIC CELL, 2013, 12 (01) :12-22
[6]  
Chang YC, 2018, MBIO, V9, DOI [10.1128/mbio.01290-18, 10.1128/mBio.01290-18]
[7]  
CLSI Clinical Laboratory Standards Institute, 2008, M27A3 CLSI
[8]   Mode of Action of a Designed Antimicrobial Peptide: High Potency against Cryptococcus neoformans [J].
Datta, Aritreyee ;
Yadav, Vikas ;
Ghosh, Anirban ;
Choi, Jaesun ;
Bhattacharyya, Dipita ;
Kar, Rajiv K. ;
Ilyas, Humaira ;
Dutta, Arkajyoti ;
An, Eunseol ;
Mukhopadhyay, Jayanta ;
Lee, Dongkuk ;
Sanyal, Kaustuv ;
Ramamoorthy, Ayyalusamy ;
Bhunia, Anirban .
BIOPHYSICAL JOURNAL, 2016, 111 (08) :1724-1737
[9]   Integrons and gene cassettes: a genetic construction kit for bacteria [J].
Bennett, PM .
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 1999, 43 (01) :1-4
[10]   The effect of L-DOPA on Cryptococcus neoformans growth and gene expression [J].
Eisenman, Helene C. ;
Chow, Siu-Kei ;
Tse, Kenneth K. ;
McClelland, Erin E. ;
Casadevall, Arturo .
VIRULENCE, 2011, 2 (04) :329-336