Adaptations of the Secretome of Candida albicans in Response to Host-Related Environmental Conditions.

Eukaryotic Cell Pub Date : 2015-12-01 Epub Date: 2015-10-09 DOI:10.1128/EC.00142-15
Frans M Klis, Stanley Brul
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引用次数: 17

Abstract

The wall proteome and the secretome of the fungal pathogen Candida albicans help it to thrive in multiple niches of the human body. Mass spectrometry has allowed researchers to study the dynamics of both subproteomes. Here, we discuss some major responses of the secretome to host-related environmental conditions. Three β-1,3-glucan-modifying enzymes, Mp65, Sun41, and Tos1, are consistently found in large amounts in culture supernatants, suggesting that they are needed for construction and expansion of the cell wall β-1,3-glucan layer and thus correlate with growth and might serve as diagnostic biomarkers. The genes ENG1, CHT3, and SCW11, which encode an endoglucanase, the major chitinase, and a β-1,3-glucan-modifying enzyme, respectively, are periodically expressed and peak in M/G1. The corresponding protein abundances in the medium correlate with the degree of cell separation during single-yeast-cell, pseudohyphal, and hyphal growth. We also discuss the observation that cells treated with fluconazole, or other agents causing cell surface stress, form pseudohyphal aggregates. Fluconazole-treated cells secrete abundant amounts of the transglucosylase Phr1, which is involved in the accumulation of β-1,3-glucan in biofilms, raising the question whether this is a general response to cell surface stress. Other abundant secretome proteins also contribute to biofilm formation, emphasizing the important role of secretome proteins in this mode of growth. Finally, we discuss the relevance of these observations to therapeutic intervention. Together, these data illustrate that C. albicans actively adapts its secretome to environmental conditions, thus promoting its survival in widely divergent niches of the human body.

Abstract Image

Abstract Image

白色念珠菌分泌组对宿主相关环境条件的适应。
真菌病原体白色念珠菌的壁蛋白质组和分泌组帮助它在人体的多个生态位中茁壮成长。质谱分析使研究人员能够研究这两种亚蛋白质组的动力学。在这里,我们讨论了分泌组对宿主相关环境条件的一些主要反应。三种β-1,3-葡聚糖修饰酶Mp65、Sun41和Tos1在培养上清液中一直大量存在,这表明它们是细胞壁β-1,3-葡聚糖层构建和扩增所必需的,因此与生长相关,可能作为诊断性生物标志物。基因ENG1、CHT3和SCW11分别编码内切葡聚糖酶、几丁质酶和β-1,3-葡聚糖修饰酶,在M/G1期周期性表达并达到峰值。培养基中相应的蛋白质丰度与单细胞、假菌丝和菌丝生长过程中细胞分离的程度有关。我们还讨论了用氟康唑或其他引起细胞表面应力的药物处理的细胞形成假菌丝聚集体的观察结果。氟康唑处理的细胞分泌大量的转糖苷酶Phr1,该酶参与了β-1,3-葡聚糖在生物膜中的积累,这引发了一个问题,即这是否是对细胞表面应激的一般反应。其他丰富的分泌组蛋白也有助于生物膜的形成,强调了分泌组蛋白在这种生长模式中的重要作用。最后,我们讨论了这些观察结果与治疗干预的相关性。总之,这些数据表明,白色念珠菌积极调整其分泌组以适应环境条件,从而促进其在人体广泛不同的生态位中的生存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eukaryotic Cell
Eukaryotic Cell 生物-微生物学
自引率
0.00%
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0
审稿时长
1 months
期刊介绍: Eukaryotic Cell (EC) focuses on eukaryotic microbiology and presents reports of basic research on simple eukaryotic microorganisms, such as yeasts, fungi, algae, protozoa, and social amoebae. The journal also covers viruses of these organisms and their organelles and their interactions with other living systems, where the focus is on the eukaryotic cell. Topics include: - Basic biology - Molecular and cellular biology - Mechanisms, and control, of developmental pathways - Structure and form inherent in basic biological processes - Cellular architecture - Metabolic physiology - Comparative genomics, biochemistry, and evolution - Population dynamics - Ecology
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