Expression of virulence factors in Candida albicans

阅读量:

40

作者:

TC WhiteGA K?HlerSH MiyasakiN Agabian

展开

摘要:

Virulence in the pathogenic yeast Candida albicans involves the interplay of many complex developmentally and environmentally regulated properties. Morphological and developmental changes such as the yeast–hyphae transition and switch phenotypes identified as colony morphologies result in the differential expression of a variety of cell properties that may include (i) secreted aspartyl proteinase (Sap) enzymatic activity that is now known to be the product of at least seven distinct genes, (ii) azole resistance that can be the result of altered expression of the target enzyme, lanosterol demethylase, or active efflux of azole drugs from the cells that may be facilitated by multidrug resistance genes (MDR genes), and (iii) a variety of Candida antigens that are recognized by patient antisera, including mannoproteins, glycolytic enzymes (especially enolase), heat shock proteins (especially Hsp90), and several Sap isoenzymes. As the details of these systems are elucidated, it becomes important to characterize the interactions between these factors that can lead to pathogenesis. The patterns of expression for genes associated with azole resistance, Sap activity, and potential antigens have been determined during the yeast–hyphae transition and between cell types in the white–opaque switch system of strain WO-1. The results suggest that genes involved in azole resistance and genes encoding potential antigens are not grossly affected by the yeast–hyphae transition or by switching between white and opaque colony morphologies. However, SAP gene expression is strictly controlled by these cell types. Key words: Candida, virulence, proteinase, azole, antigens, switch.

展开

DOI:

10.1139/b95-357

被引量:

359

年份:

1995

通过文献互助平台发起求助,成功后即可免费获取论文全文。

我们已与文献出版商建立了直接购买合作。

你可以通过身份认证进行实名认证,认证成功后本次下载的费用将由您所在的图书馆支付

您可以直接购买此文献,1~5分钟即可下载全文,部分资源由于网络原因可能需要更长时间,请您耐心等待哦~

身份认证 全文购买

相似文献

参考文献

引证文献

辅助模式

0

引用

文献可以批量引用啦~
欢迎点我试用!

关于我们

百度学术集成海量学术资源,融合人工智能、深度学习、大数据分析等技术,为科研工作者提供全面快捷的学术服务。在这里我们保持学习的态度,不忘初心,砥砺前行。
了解更多>>

友情链接

百度云百度翻译

联系我们

合作与服务

期刊合作 图书馆合作 下载产品手册

©2025 Baidu 百度学术声明 使用百度前必读

引用