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BRG1 and NRG1 form a novel feedback circuit regulating Candida albicans hypha formation and virulence

机译:BRG1和NRG1形成了一种新型反馈电路,可调节白色念珠菌菌丝的形成和毒力

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In the opportunistic fungal pathogen Candida albicans both cellular morphology and the capacity to cause disease are regulated by the transcriptional repressor Nrg1p. One of the genes repressed by Nrg1p is BRG1, which encodes a putative GATA family transcription factor. Deletion of both copies of this gene prevents hypha formation. We discovered that BRG1 overexpression is sufficient to overcome Nrg1p-mediated repression and drive the morphogenetic shift from yeast to hyphae even in the absence of environmental stimuli. We further observed that expression of BRG1 influences the stability of the NRG1 transcript, thus controlling filamentation through a feedback loop. Analysis of this phenomenon revealed that BRG1 expression is required for the induction of an antisense NRG1 transcript. This is the first demonstration of a role for mRNA stability in regulating the key C.albicans virulence trait: the ability to form hyphae.
机译:在机会性真菌病原体白色念珠菌中,细胞形态和致病能力均受转录阻遏物Nrg1p的调节。 Nrg1p抑制的基因之一是BRG1,它编码一个假定的GATA家族转录因子。删除该基因的两个拷贝可防止菌丝形成。我们发现,BRG1的过表达足以克服Nrg1p介导的阻遏作用,即使在没有环境刺激的情况下,也能驱动从酵母菌丝到菌丝的形态发生转变。我们进一步观察到,BRG1的表达影响NRG1转录本的稳定性,从而通过反馈回路控制细丝化。对该现象的分析表明,BRG1表达是诱导反义NRG1转录本所必需的。这是mRNA稳定性在调节关键白色念珠菌毒力特征:形成菌丝的能力中的作用的首次证明。

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