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Differential Regulation of White-Opaque Switching by Individual Subunits of Candida albicans Mediator

机译:白色念珠菌介体单个亚基对白-不透明开关的差异调节。

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The multisubunit eukaryotic Mediator complex integrates diverse positive and negative gene regulatory signals and transmits them to the core transcription machinery. Mutations in individual subunits within the complex can lead to decreased or increased transcription of certain subsets of genes, which are highly specific to the mutated subunit. Recent studies suggest a role for Mediator in epigenetic silencing. Using white-opaque morphological switching in Candida albicans as a model, we have shown that Mediator is required for the stability of both the epigenetic silenced (white) and active (opaque) states of the bistable transcription circuit driven by the master regulator Wor1. Individual deletions of eight C. albicans Mediator subunits have shown that different Mediator subunits have dramatically diverse effects on the directionality, frequency, and environmental induction of epigenetic switching. Among the Mediator deletion mutants analyzed, only Med12 has a steady-state transcriptional effect on the components of the Wor1 circuit that clearly corresponds to its effect on switching. The MED16 and MED9 genes have been found to be among a small subset of genes that are required for the stability of both the white and opaque states. Deletion of the Med3 subunit completely destabilizes the opaque state, even though the Wor1 transcription circuit is intact and can be driven by ectopic expression of Wor1. The highly impaired ability of the med3 deletion mutant to mate, even when Wor1 expression is ectopically induced, reveals that the activation of the Wor1 circuit can be decoupled from the opaque state and one of its primary biological consequences.
机译:多亚基真核介体复合物整合了各种阳性和阴性基因调节信号,并将其传输至核心转录机制。复合物中单个亚基的突变可导致某些基因子集的转录降低或增加,这些基因对突变亚基高度特异。最近的研究表明介体在表观遗传沉默中的作用。使用白色念珠菌中的白色不透明形态转换作为模型,我们已经表明介体对于由主调节器Wor1驱动的双稳态转录电路的表观遗传沉默(白色)和活动(不透明)状态的稳定性都是必需的。八个白色念珠菌介体亚基的个别删除显示,不同介体亚基对表观遗传转换的方向性,频率和环境诱导具有显着不同的影响。在分析的介体缺失突变体中,只有Med12对Wor1电路的组件具有稳态转录作用,这显然与其对开关的作用相对应。已经发现 MED16 MED9 基因是白色和不透明状态的稳定性所必需的一小部分基因。 Med3亚基的删除会完全破坏不透明状态,即使Wor1转录电路完整无缺,并且可以由Wor1的异位表达来驱动。即使在异位诱导Wor1表达时, med3 缺失突变体的交配能力也大大受损,这表明Wor1回路的激活可以与不透明状态分离,这是其主要生物学结果之一。

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