Overlapping coactivator function is required for transcriptional activation by the Candida glabrata Pdr1 transcription factor

被引:1
|
作者
Conway, Thomas P. [1 ]
Simonicova, Lucia [1 ]
Moye-Rowley, W. Scott [1 ]
机构
[1] Univ Iowa, Carver Coll Med, Dept Mol Physiol & Biophys, Iowa City, IA 52242 USA
基金
美国国家卫生研究院;
关键词
Candida glabrata; transcription; drug resistance; pathogenic yeast; AZOLE RESISTANCE; MULTIDRUG-RESISTANCE; TRANSPORTER GENE; SAGA; COMPLEX; BINDING; MEDIATOR; SWI/SNF; IDENTIFICATION; PURIFICATION;
D O I
10.1093/genetics/iyae115
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Azole resistance in the pathogenic yeast Candida glabrata is a serious clinical complication and increasing in frequency. The majority of resistant organisms have been found to contain a substitution mutation in the Zn2Cys6 zinc cluster-containing transcription factor Pdr1. These mutations typically lead to this factor driving high, constitutive expression of target genes like the ATP-binding cassette transporter-encoding gene CDR1. Overexpression of Cdr1 is required for the observed elevated fluconazole resistance exhibited by strains containing one of these hyperactive PDR1 alleles. While the identity of hyperactive PDR1 alleles has been extensively documented, the mechanisms underlying how these gain-of-function (GOF) forms of Pdr1 lead to elevated target gene transcription are not well understood. We have used a tandem affinity purification-tagged form of Pdr1 to identify coactivator proteins that biochemically purify with the wild-type and 2 different GOF forms of Pdr1. Three coactivator proteins were found to associate with Pdr1: the SWI/SNF complex Snf2 chromatin remodeling protein and 2 different components of the SAGA complex, Spt7 and Ngg1. We found that deletion mutants lacking either SNF2 or SPT7 exhibited growth defects, even in the absence of fluconazole challenge. To overcome these issues, we employed a conditional degradation system to acutely deplete these coactivators and determined that loss of either coactivator complex, SWI/SNF or SAGA, caused defects in Pdr1-dependent transcription. A double degron strain that could be depleted for both SWI/SNF and SAGA exhibited a profound defect in PDR1 autoregulation, revealing that these complexes work together to ensure high-level Pdr1-dependent gene transcription.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Redefining pleiotropic drug resistance in a pathogenic yeast: Pdr1 functions as a sensor of cellular stresses in Candida glabrata
    Gale, Andrew N.
    Pavesic, Matthew W.
    Nickels, Timothy J.
    Xu, Zhuwei
    Cormack, Brendan P.
    Cunningham, Kyle W.
    MSPHERE, 2023, 8 (04)
  • [22] Upregulation of the Adhesin Gene EPA1 Mediated by PDR1 in Candida glabrata Leads to Enhanced Host Colonization
    Vale-Silva, Luis A.
    Moeckli, Beat
    Torelli, Riccardo
    Posteraro, Brunella
    Sanguinetti, Maurizio
    Sanglard, Dominique
    MSPHERE, 2016, 1 (02):
  • [23] Profiling of PDR1 and MSH2 in Candida glabrata Bloodstream Isolates from a Multicenter Study in China
    Hou, Xin
    Xiao, Meng
    Wang, He
    Yu, Shu-Ying
    Zhang, Ge
    Zhao, Yanan
    Xu, Ying-Chun
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2018, 62 (06)
  • [24] Role for the molecular chaperones Zuo1 and Ssz1 in quorum sensing via activation of the transcription factor Pdr1
    Prunuske, Amy J.
    Waltner, Jeanette K.
    Kuhn, Peter
    Gu, Bohao
    Craig, Elizabeth Anne
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (02) : 472 - 477
  • [25] The SAGA components GCN5 and ADA2 influence the activity of fluconazole against Candida glabrata independent of the PDR1 transcriptional pathway.
    Whaley, Sarah G.
    Barker, Katherine S.
    Rogers, P. David
    PHARMACOTHERAPY, 2012, 32 (10): : E293 - E293
  • [26] Azole resistance in Candida glabrata:: Coordinate upregulation of multidrug transporters and evidence for a Pdr1-like transcription factor
    Vermitsky, JP
    Edlind, TD
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2004, 48 (10) : 3773 - 3781
  • [27] GENETIC ELEMENTS REQUIRED FOR THE RAPID AUTO ACTIVATION OF THE AMT1 METALLOREGULATORY TRANSCRIPTION FACTOR GENE IN THE YEAST CANDIDA-GLABRATA
    ZHU, ZW
    THIELE, DJ
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1995, : 252 - 252
  • [28] Negative regulation of Candida glabrata Pdr1 by the deubiquitinase subunit Bre5 occurs in a ubiquitin independent manner
    Paul, Sanjoy
    McDonald, W. Hayes
    Moye-Rowley, W. Scott
    MOLECULAR MICROBIOLOGY, 2018, 110 (02) : 309 - 323
  • [29] A yeast cell-based system for screening Candida glabrata multidrug resistance reversal agents and selection of loss-of-function pdr1 mutants
    Goffa, Eduard
    Bialkova, Alexandra
    Batova, Monika
    Dzugasova, Vladimira
    Subik, Julius
    FEMS YEAST RESEARCH, 2011, 11 (02) : 155 - 159
  • [30] An artificial transcription activator mimics the genome-wide properties of the yeast Pdr1 transcription factor
    Devauz, F
    Marc, P
    Bouchoux, C
    Delaveau, T
    Hikkel, I
    Potier, MC
    Jacq, C
    EMBO REPORTS, 2001, 2 (06) : 493 - 498