YpdA, a putative bacillithiol disulfide reductase, contributes to cellular redox homeostasis and virulence in Staphylococcus aureus

被引:26
|
作者
Mikheyeva, Irina V. [1 ]
Thomas, Jason M. [2 ]
Kolar, Stacey L. [3 ]
Corvaglia, Anna-Rita [4 ]
Gaia, Nadia [4 ]
Leo, Stefano [4 ]
Francois, Patrice [4 ]
Liu, George Y. [3 ]
Rawat, Mamta [2 ]
Cheung, Ambrose L. [1 ]
机构
[1] Geisel Sch Med Dartmouth, Dept Microbiol & Immunol, Hanover, NH 03755 USA
[2] Calif State Univ Fresno, Biol Dept, Fresno, CA 93740 USA
[3] Cedars Sinai Med Ctr, Dept Pediat, Los Angeles, CA 90048 USA
[4] Univ Hosp Geneva, Serv Infect Dis, Genom Res Lab, CH-1205 Geneva 4, Switzerland
基金
美国国家卫生研究院;
关键词
DIFFERENTIAL EXPRESSION ANALYSIS; BACILLUS-SUBTILIS; OXIDATIVE STRESS; IN-VIVO; GLUTATHIONE-REDUCTASE; HUMAN NEUTROPHILS; BIOFILM FORMATION; ESCHERICHIA-COLI; THIOL; GENE;
D O I
10.1111/mmi.14207
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The intracellular redox environment of Staphylococcus aureus is mainly buffered by bacillithiol (BSH), a low molecular weight thiol. The identity of enzymes responsible for the recycling of oxidized bacillithiol disulfide (BSSB) to the reduced form (BSH) remains elusive. We examined YpdA, a putative bacillithiol reductase, for its role in maintaining intracellular redox homeostasis. The ypdA mutant showed increased levels of BSSB and a lower bacillithiol redox ratio vs. the isogenic parent, indicating a higher level of oxidative stress within the bacterial cytosol. We showed that YpdA consumed NAD(P)H; and YpdA protein levels were augmented in response to stress. Wild type strains overexpressing YpdA showed increased tolerance to oxidants and electrophilic agents. Importantly, YpdA overexpression in the parental strain caused an increase in BSH levels accompanied by a decrease in BSSB concentration in the presence of stress, resulting in an increase in bacillithiol redox ratio vs. the vector control. Additionally, the ypdA mutant exhibited decreased survival in human neutrophils (PMNs) as compared with the parent, while YpdA overexpression protected the resulting strain from oxidative stress in vitro and from killing by human neutrophils ex vivo. Taken together, these data present a new role for YpdA in S. aureus physiology and virulence through the bacillithiol system.
引用
收藏
页码:1039 / 1056
页数:18
相关论文
共 50 条
  • [21] The cvfC operon of Staphylococcus aureus contributes to virulence via expression of the thyA gene
    Ikuo, Mariko
    Kaito, Chikara
    Sekimizu, Kazuhisa
    MICROBIAL PATHOGENESIS, 2010, 49 (1-2) : 1 - 7
  • [22] Structure of BrxA from Staphylococcus aureus, a bacilliredoxin involved in redox homeostasis in Firmicutes
    McHugh, Colin S.
    Cook, Paul D.
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS, 2022, 78 : 144 - 149
  • [23] Staphylococcal accessory regulator (sar) in conjunction with agr contributes to Staphylococcus aureus virulence in endophthalmitis
    Booth, MC
    Cheung, AL
    Hatter, KL
    Jett, BD
    Callegan, MC
    Gilmore, MS
    INFECTION AND IMMUNITY, 1997, 65 (04) : 1550 - 1556
  • [24] Overexpression of Mycothiol Disulfide Reductase Enhances Corynebacterium glutamicum Robustness by Modulating Cellular Redox Homeostasis and Antioxidant Proteins under Oxidative Stress
    Meiru Si
    Chao Zhao
    Bing Zhang
    Dawei Wei
    Keqi Chen
    Xu Yang
    He Xiao
    Xihui Shen
    Scientific Reports, 6
  • [25] Overexpression of Mycothiol Disulfide Reductase Enhances Corynebacterium glutamicum Robustness by Modulating Cellular Redox Homeostasis and Antioxidant Proteins under Oxidative Stress
    Si, Meiru
    Zhao, Chao
    Zhang, Bing
    Wei, Dawei
    Chen, Keqi
    Yang, Xu
    Xiao, He
    Shen, Xihui
    SCIENTIFIC REPORTS, 2016, 6
  • [26] In Staphylococcus aureus, Fur is an interactive regulator with PerR, contributes to virulence, and is necessary for oxidative stress resistance through positive regulation of catalase and iron homeostasis
    Horsburgh, MJ
    Ingham, E
    Foster, SJ
    JOURNAL OF BACTERIOLOGY, 2001, 183 (02) : 468 - 475
  • [27] Real-Time Imaging of the Bacillithiol Redox Potential in the Human Pathogen Staphylococcus aureus Using a Genetically Encoded Bacilliredoxin-Fused Redox Biosensor
    Vu Van Loi
    Harms, Manuela
    Mueller, Marret
    Nguyen Thi Thu Huyen
    Hamilton, Chris J.
    Hochgraefe, Falko
    Pane-Farre, Jan
    Antelmann, Haike
    ANTIOXIDANTS & REDOX SIGNALING, 2017, 26 (15) : 835 - 848
  • [28] Transcriptional regulation of the Staphylococcus aureus thioredoxin and thioredoxin reductase genes in response to oxygen and disulfide stress
    Uziel, O
    Borovok, I
    Schreiber, R
    Cohen, G
    Aharonowitz, Y
    JOURNAL OF BACTERIOLOGY, 2004, 186 (02) : 326 - 334
  • [29] PheP, a putative amino acid permease of Staphylococcus aureus, contributes to survival in vivo and during starvation
    Horsburgh, MJ
    Wiltshire, MD
    Crossley, H
    Ingham, E
    Foster, SJ
    INFECTION AND IMMUNITY, 2004, 72 (05) : 3073 - 3076
  • [30] The neutrophil oxidant hypothiocyanous acid causes a thiol-specific stress response and an oxidative shift of the bacillithiol redox potential in Staphylococcus aureus
    Loi, Vu Van
    Busche, Tobias
    Schnaufer, Franziska
    Kalinowski, Joern
    Antelmann, Haike
    MICROBIOLOGY SPECTRUM, 2023,