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白色念珠菌中的基因调控与宿主适应机制。

Gene regulation and host adaptation mechanisms in Candida albicans.

作者信息

Staib P, Wirsching S, Strauss A, Morschhäuser J

机构信息

Zentrum für Infektionsforschung, Universität Würzburg, Germany.

出版信息

Int J Med Microbiol. 2001 May;291(2):183-8. doi: 10.1078/1438-4221-00114.

Abstract

The yeast Candida albicans is a harmless member of the normal microflora on the mucosal surfaces of most healthy persons, but it can cause severe opportunistic infections in immunosuppressed patients. To become a successful human commensal and pathogen, C. albicans has evolved host adaptation mechanisms on different levels. The regulated expression of virulence and other genes in response to environmental signals allows an optimal adaptation to new host niches during the course of an infection. In addition, C. albicans is able to switch between different cell types in a reversible and apparently random fashion. Phenotypic switching involves the coordinated regulation of phase-specific genes, and the resulting generation of selected, pre-programmed cell types may represent an additional strategy to adapt to certain host environments. Finally, C. albicans produces genetically altered variants at a high rate. This microevolution ensures survival when the pathogen encounters new adverse conditions, as exemplified by the development of stable drug-resistant variants under the selection pressure caused by antimycotic therapy. Thus, rather than the possession of single dominant virulence factors, it is its remarkable versatility that makes C. albicans the most important fungal pathogen of humans.

摘要

白色念珠菌是大多数健康人黏膜表面正常微生物群落中的无害成员,但它可在免疫抑制患者中引起严重的机会性感染。为了成为成功的人体共生菌和病原体,白色念珠菌在不同层面进化出了宿主适应机制。响应环境信号时毒力基因和其他基因的调控表达,使它在感染过程中能最佳地适应新的宿主生态位。此外,白色念珠菌能够以可逆且明显随机的方式在不同细胞类型之间转换。表型转换涉及阶段特异性基因的协调调控,所产生的特定预编程细胞类型的生成可能代表了适应某些宿主环境的另一种策略。最后,白色念珠菌以高频率产生基因改变的变体。这种微进化确保了病原体在遇到新的不利条件时能够存活,抗真菌治疗引起的选择压力下稳定耐药变体的出现就是例证。因此,使白色念珠菌成为人类最重要真菌病原体的并非单一的主导毒力因子,而是其非凡的多功能性。

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