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首页> 外文期刊>Eukaryotic cell >Divergent Targets of Candida albicans Biofilm Regulator Bcr1 In Vitro and In Vivo
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Divergent Targets of Candida albicans Biofilm Regulator Bcr1 In Vitro and In Vivo

机译:体外和体内念珠菌生物膜调节剂Bcr1的不同目标。

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Candida albicans is a causative agent of oropharyngeal candidiasis (OPC), a biofilm-like infection of the oral mucosa. Biofilm formation depends upon the C. albicans transcription factor Bcr1, and previous studies indicate that Bcr1 is required for OPC in a mouse model of infection. Here we have used a nanoString gene expression measurement platform to elucidate the role of Bcr1 in OPC-related gene expression. We chose for assays a panel of 134 genes that represent a range of morphogenetic and cell cycle functions as well as environmental and stress response pathways. We assayed gene expression in whole infected tongue samples. The results sketch a portrait of C. albicans gene expression in which numerous stress response pathways are activated during OPC. This one set of experiments identifies 64 new genes with significantly altered RNA levels during OPC, thus increasing substantially the number of known genes in this expression class. The bcr1Δ/Δ mutant had a much more limited gene expression defect during OPC infection than previously reported for in vitro growth conditions. Among major functional Bcr1 targets, we observed that ALS3 was Bcr1 dependent in vivo while HWP1 was not. We used null mutants and complemented strains to verify that Bcr1 and Hwp1 are required for OPC infection in this model. The role of Als3 is transient and mild, though significant. Our findings suggest that the versatility of C. albicans as a pathogen may reflect its ability to persist in the face of multiple stresses and underscore that transcriptional circuitry during infection may be distinct from that detailed during in vitro growth.
机译:白色念珠菌是口咽念珠菌病(OPC)的病原体,是口腔粘膜的生物膜样感染。生物膜的形成取决于白色念珠菌转录因子Bcr1,先前的研究表明Bcr1是感染小鼠模型中OPC所必需的。在这里,我们使用了nanoString基因表达测量平台来阐明Bcr1在OPC相关基因表达中的作用。我们为测定选择了一组134个基因,这些基因代表一系列的形态发生和细胞周期功能以及环境和应激反应途径。我们分析了整个感染舌头样本中的基因表达。结果勾勒出白色念珠菌基因表达的肖像,其中在OPC期间激活了许多应激反应途径。这项实验确定了64种在OPC期间具有显着改变的RNA水平的新基因,从而大大增加了该表达类别中已知基因的数量。与以前报道的体外生长条件相比, bcr1 Δ/Δ突变体在OPC感染过程中具有有限得多的基因表达缺陷。在主要的功能性Bcr1靶标中,我们观察到 ALS3 是体内Bcr1依赖性的 ,而 HWP1 不是。我们使用无效突变体和互补菌株来验证Bcr1和Hwp1是该模型中OPC感染所必需的。 Als3的作用是短暂而温和的,尽管意义重大。我们的发现表明,白色念珠菌作为病原体的多功能性可能反映了其在多种压力下的持久能力,并强调感染过程中的转录途径可能与体外生长过程中详述的转录途径不同。

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