Genetic analysis of innate immunity in resistance to Candida albicans

被引:0
|
作者
A Tuite
A Mullick
P Gros
机构
[1] McGill University,Department of Biochemistry
[2] Montréal,undefined
[3] Biotechnology Research Institute,undefined
[4] Montréal,undefined
来源
Genes & Immunity | 2004年 / 5卷
关键词
candida albicans; infection; genetics;
D O I
暂无
中图分类号
学科分类号
摘要
Systemic candidiasis is a significant cause of nosocomial infections and the mechanisms of defense against Candida albicans in humans remain poorly understood. Studies in animal models have demonstrated the importance of innate immunity in controlling the response to infection. Although Th1 cytokines have been shown to direct the overall outcome of infection, the precise role of the Th1/Th2 response and, more generally, the adaptive immune response as a whole, in systemic candidiasis, appears to apply mainly to the development of resistance to reinfection. A genetic approach to the identification of host factors regulating pathogenesis and susceptibility to C. albicans infection has been used in humans and in mouse models of infection. Mouse mutants bearing experimentally induced mutations in specific genes have provided a systematic tool for directly assessing the role of individual proteins in C. albicans susceptibility. Inbred mouse strains have been valuable in showcasing the spectrum of naturally occurring variations in initial susceptibility to infection, and type of disease developed. Crosses between resistant and susceptible strains have led to the detection of additional gene effects affecting innate immunity. Of particular interest is the major effect of a naturally occurring loss-of-function mutation in the C5 complement component that has become fixed in many inbred strains. These and other studies have shown that both a functional complement pathway and robust inflammatory response are critical for resistance to C. albicans.
引用
收藏
页码:576 / 587
页数:11
相关论文
共 50 条
  • [21] Candida innate immunity at the mucosa
    Richardson, Jonathan P.
    Moyes, David L.
    Ho, Jemima
    Naglik, Julian R.
    SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2019, 89 : 58 - 70
  • [22] Flucytosine resistance is restricted to a single genetic clade of Candida albicans
    Pujol, C
    Pfaller, MA
    Soll, DR
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2004, 48 (01) : 262 - 266
  • [23] Genetic determination of susceptibility and resistance in the pathogenesis of Candida albicans infection
    Ashman, RB
    FEMS IMMUNOLOGY AND MEDICAL MICROBIOLOGY, 1997, 19 (03): : 183 - 189
  • [24] Beyond Candida albicans: Mechanisms of immunity to non-albicans Candida species
    Whibley, Natasha
    Gaffen, Sarah L.
    CYTOKINE, 2015, 76 (01) : 42 - 52
  • [25] Mucosal Immunity and Candida albicans Infection
    Moyes, David L.
    Naglik, Julian R.
    CLINICAL & DEVELOPMENTAL IMMUNOLOGY, 2011, : 1 - 9
  • [26] Candida albicans Pathogenicity and Epithelial Immunity
    Naglik, Julian R.
    Richardson, Jonathan P.
    Moyes, David L.
    PLOS PATHOGENS, 2014, 10 (08)
  • [27] Candida albicans infection and intestinal immunity
    Tong, Yiqing
    Tang, Jianguo
    MICROBIOLOGICAL RESEARCH, 2017, 198 : 27 - 35
  • [28] Proteomic analysis of fluconazole resistance in laboratory Candida albicans
    Yan, Lan
    Zhang, Jun-Dong
    Cao, Yong-Bing
    Gao, Ping-Hui
    Jiang, Yuan-Ying
    ACTA PHARMACOLOGICA SINICA, 2006, 27 : 369 - 370
  • [29] Innate Immunity to Mucosal Candida Infections
    Verma, Akash
    Gaffen, Sarah L.
    Swidergall, Marc
    JOURNAL OF FUNGI, 2017, 3 (04)
  • [30] The Adaptor CARD9 Is Required for Adaptive but Not Innate Immunity to Oral Mucosal Candida albicans Infections
    Bishu, Shrinivas
    Hernandez-Santos, Nydiaris
    Simpson-Abelson, Michelle R.
    Huppler, Anna R.
    Conti, Heather R.
    Ghilardi, Nico
    Mamo, Anna J.
    Gaffen, Sarah L.
    INFECTION AND IMMUNITY, 2014, 82 (03) : 1173 - 1180