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Identification and Functional Characterization of Rca1 a Transcription Factor Involved in both Antifungal Susceptibility and Host Response in Candida albicans

机译:Rca1白色念珠菌的抗真菌药性和宿主反应均涉及的转录因子的鉴定和功能表征。

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摘要

The identification of novel transcription factors associated with antifungal response may allow the discovery of fungus-specific targets for new therapeutic strategies. A collection of 241 Candida albicans transcriptional regulator mutants was screened for altered susceptibility to fluconazole, caspofungin, amphotericin B, and 5-fluorocytosine. Thirteen of these mutants not yet identified in terms of their role in antifungal response were further investigated, and the function of one of them, a mutant of orf19.6102 (RCA1), was characterized by transcriptome analysis. Strand-specific RNA sequencing and phenotypic tests assigned Rca1 as the regulator of hyphal formation through the cyclic AMP/protein kinase A (cAMP/PKA) signaling pathway and the transcription factor Efg1, but also probably through its interaction with a transcriptional repressor, most likely Tup1. The mechanisms responsible for the high level of resistance to caspofungin and fluconazole observed resulting from RCA1 deletion were investigated. From our observations, we propose that caspofungin resistance was the consequence of the deregulation of cell wall gene expression and that fluconazole resistance was linked to the modulation of the cAMP/PKA signaling pathway activity. In conclusion, our large-scale screening of a C. albicans transcription factor mutant collection allowed the identification of new effectors of the response to antifungals. The functional characterization of Rca1 assigned this transcription factor and its downstream targets as promising candidates for the development of new therapeutic strategies, as Rca1 influences host sensing, hyphal development, and antifungal response.
机译:与抗真菌反应相关的新型转录因子的鉴定可允许发现真菌特异性靶标用于新的治疗策略。针对氟康唑,卡泊芬净,两性霉素B和5-氟胞嘧啶的敏感性变化,对241个白色念珠菌转录调节子突变体进行了筛选。进一步研究了其中13种尚未确定其在抗真菌反应中的作用的突变体,并通过转录组分析对其中一个突变体orf19.6102(RCA1)的功能进行了研究。链特异性RNA测序和表型测试将Rca1指定为通过环AMP /蛋白激酶A(cAMP / PKA)信号传导途径和转录因子Efg1形成菌丝的调节剂,而且很可能是通过其与转录阻遏物的相互作用来实现的Tup1。研究了由RCA1缺失导致的对卡泊芬净和氟康唑的高水平耐药性的机制。根据我们的观察,我们提出卡泊芬净耐药性是细胞壁基因表达失调的结果,而氟康唑耐药性与cAMP / PKA信号通路活性的调节有关。总之,我们对白色念珠菌转录因子突变体集合的大规模筛选允许鉴定抗真菌反应的新效应子。 Rca1的功能表征将此转录因子及其下游靶标指定为开发新治疗策略的有希望的候选者,因为Rca1影响宿主的感觉,菌丝发育和抗真菌反应。

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