Identification of Candida glabrata Transcriptional Regulators That Govern Stress Resistance and Virulence

被引:8
|
作者
Filler, Elan E. [1 ]
Liu, Yaoping [1 ]
Solis, Norma, V [1 ]
Wang, Ling [2 ,3 ]
Diaz, Luis F. [2 ,3 ]
Edwards, John E., Jr. [1 ,3 ,4 ]
Filler, Scott G. [1 ,3 ,4 ]
Yeaman, Michael R. [2 ,3 ,4 ]
机构
[1] Harbor UCLA Med Ctr, Div Infect Dis, Torrance, CA 90509 USA
[2] Harbor UCLA Med Ctr, Div Mol Med, Torrance, CA 90509 USA
[3] Harbor UCLA Med Ctr, Inst Infect & Immun, Lundquist Inst Biomed Innovat, Torrance, CA 90509 USA
[4] UCLA, David Geffen Sch Med, Los Angeles, CA 90095 USA
关键词
Candida glabrata; antifungal agents; histone modification; host defense peptide; virulence regulation; COMPLEX; ALBICANS; MECHANISMS; EXPRESSION; PEPTIDE; PROTEIN; ROLES; GENE; MKS1;
D O I
10.1128/IAI.00146-20
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The mechanisms by which Candida glabrata resists host defense peptides and caspofungin are incompletely understood. To identify transcriptional regulators that enable C. glabrata to withstand these classes of stressors, a library of 215 C. glabrata transcriptional regulatory deletion mutants was screened for susceptibility to both protamine and caspofungin. We identified eight mutants that had increased susceptibility to both host defense peptides and caspofungin. Of these mutants, six were deleted for genes that were predicted to specify proteins involved in histone modification. These genes were ADA2, GCN5, SPT8, HOS2, RPD3, and SPP1. Deletion of ADA2, GCN5, and RPD3 also increased susceptibility to mammalian host defense peptides. The Delta ada2 and Delta gcn5 mutants had increased susceptibility to other stressors, such as H2O2 and SDS. In the Galleria mellonella model of disseminated infection, the Delta ada2 and Delta gcn5 mutants had attenuated virulence, whereas in neutropenic mice, the virulence of the Delta ada2 and Delta rpd3 mutants was decreased. Thus, histone modification plays a central role in enabling C. glabrata to survive host defense peptides and caspofungin, and Ada2 and Rpd3 are essential for the maximal virulence of this organism during disseminated infection.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Comparative virulence of Candida auris with Candida haemulonii, Candida glabrata and Candida albicans in a murine model
    Fakhim, H.
    Vaezi, A.
    Dannaoui, E.
    Chowdhary, A.
    Nasiry, D.
    Faeli, L.
    Meis, J. F.
    Badali, H.
    MEDICAL MYCOLOGY, 2018, 56 : S51 - S51
  • [32] Comparative virulence of Candida auris with Candida haemulonii, Candida glabrata and Candida albicans in a murine model
    Fakhim, Hamed
    Vaezi, Afsane
    Dannaoui, Eric
    Chowdhary, Anuradha
    Nasiry, Davood
    Faeli, Leila
    Meis, Jacques F.
    Badali, Hamid
    MYCOSES, 2018, 61 (06) : 377 - 382
  • [33] The role of biotin in Candida glabrata - macrophage interaction and virulence
    Sprenger, M.
    Allert, S.
    Seider, K.
    Kasper, L.
    Hube, B.
    MYCOSES, 2015, 58 : 43 - 44
  • [34] Rapid identification of Candida glabrata in Candida bloodstream infections
    Foster, Nicholas
    Symes, Charlotte
    Barton, Richard
    Hobson, Richard
    JOURNAL OF MEDICAL MICROBIOLOGY, 2007, 56 (12) : 1639 - 1643
  • [35] Echinocandin resistance mechanism in Candida tropicalis and Candida glabrata
    Sharma, Dipti
    Paul, Raees A.
    Murlidharan, Jayashree
    Sharma, Sadhna
    Kaur, Harsimran
    Ghosh, Anup K.
    Chakrabarti, Arunaloke
    Rudramurthy, Shivaprakash M.
    MEDICAL MYCOLOGY, 2022, 60 (SUPP 1) : 42 - 42
  • [36] Histone Acetylation Regulator Gcn5 Mediates Drug Resistance and Virulence of Candida glabrata
    Yu, Shuying
    Paderu, Padmaja
    Lee, Annie
    Eirekat, Sami
    Healey, Kelley
    Chen, Liang
    Perlin, David S.
    Zhao, Yanan
    MICROBIOLOGY SPECTRUM, 2022, 10 (03):
  • [37] Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
    Cavalheiro, Mafalda
    Romao, Daniela
    Santos, Rui
    Mil-Homens, Dalila
    Pais, Pedro
    Costa, Catarina
    Galocha, Monica
    Pereira, Diana
    Takahashi-Nakaguchi, Azusa
    Chibana, Hiroji
    Fialho, Arsenio M.
    Teixeira, Miguel C.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (03) : 1 - 15
  • [38] Loss of Mitochondrial Functions Associated with Azole Resistance in Candida glabrata Results in Enhanced Virulence in Mice
    Ferrari, Selene
    Sanguinetti, Maurizio
    De Bernardis, Flavia
    Torelli, Riccardo
    Posteraro, Brunella
    Vandeputte, Patrick
    Sanglard, Dominique
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2011, 55 (05) : 1852 - 1860
  • [39] Identification of an arginine transporter in Candida glabrata
    Nishimura, Akira
    Tanahashi, Ryoya
    Nakagami, Kazuki
    Morioka, Yuto
    Takagi, Hiroshi
    JOURNAL OF GENERAL AND APPLIED MICROBIOLOGY, 2023, 69 (04): : 229 - 233
  • [40] Virulence and resistance factors of Nakaseomyces glabratus (formerly known as Candida glabrata) in Europe: A systematic review
    Rodriguez-Cerdeira, Carmen
    Pinto-Almazan, Rodolfo
    Saunte, Ditte M. L.
    Hay, R.
    Szepietowsk, J.
    Moreno-Coutino, Gabriela
    Skerlev, Mihael
    Prohic, Asja
    Martinez-Herrera, Erick
    JOURNAL OF THE EUROPEAN ACADEMY OF DERMATOLOGY AND VENEREOLOGY, 2025, 39 (02) : 377 - 388