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锌指转录因子Ofi1调节白色念珠菌的白-不透明转换和丝状化。

The zinc-finger transcription factor, Ofi1, regulates white-opaque switching and filamentation in the yeast Candida albicans.

作者信息

Du Han, Li Xiaoling, Huang Guanghua, Kang Yingqian, Zhu Liquan

机构信息

College of Agronomy and Biotechnology, Southwest University, Chongqing 400715, China.

Department of Microbiology, Guiyang Medical University, Guiyang 550004, China.

出版信息

Acta Biochim Biophys Sin (Shanghai). 2015 May;47(5):335-41. doi: 10.1093/abbs/gmv011. Epub 2015 Mar 10.

Abstract

Candida albicans is a major fungal pathogen of humans. The most striking biological feature of C. albicans is its phenotypic plasticity, allowing it to undergo morphological transitions in response to various environmental cues. Transcription factors play critical roles in the regulation of morphological transitions. Here, we report the role of opaque and filamentation inducer 1 (Ofi1), a previously uncharacterized zinc-finger-containing protein encoded by the gene orf19.4972, in the regulation of white-opaque switching and filamentous growth. Over-expression of OFI1 not only induced white-to-opaque switching but also promoted filamentation and invasive growth in C. albicans. Deletion of OFI1 had no obvious effect on filamentation under the culture conditions tested, while deletion of OFI1 reduced the frequency of white-to-opaque switching. We propose that Ofi1 functions downstream of Wor1, the master regulator of white-opaque switching. However, over-expression of OFI1 in the wor1/wor1 mutant could not induce the opaque phenotype, suggesting that Ofi1 does not work alone and other transcription factors downstream of Wor1 are also involved in this regulation. Given the importance of Ofi1 in the regulation of white-opaque switching and filamentation, the present study establishes a new link between these two processes.

摘要

白色念珠菌是人类主要的真菌病原体。白色念珠菌最显著的生物学特征是其表型可塑性,使其能够响应各种环境信号发生形态转变。转录因子在形态转变的调控中起关键作用。在此,我们报道了不透明和丝状化诱导因子1(Ofi1)的作用,Ofi1是一种先前未被表征的含锌指蛋白,由基因orf19.4972编码,参与白色-不透明转换和丝状生长的调控。OFI1的过表达不仅诱导了白色到不透明的转换,还促进了白色念珠菌的丝状化和侵袭性生长。在测试的培养条件下,OFI1的缺失对丝状化没有明显影响,而OFI1的缺失降低了白色到不透明转换的频率。我们提出Ofi1在白色-不透明转换的主调节因子Wor1的下游发挥作用。然而,在wor1/wor1突变体中过表达OFI1不能诱导不透明表型,这表明Ofi1并非单独起作用,Wor1下游的其他转录因子也参与了这一调控。鉴于Ofi1在白色-不透明转换和丝状化调控中的重要性,本研究在这两个过程之间建立了新的联系。

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