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Transcriptional loops meet chromatin: a dual-layer network controls white–opaque switching in Candida albicans

机译:转录环与染色质相遇:双层网络控制白色念珠菌中的白色至不透明切换

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摘要

The human pathogen Candida albicans is able to undergo a reversible switch between two distinct cell types called white and opaque, which are considered different transcriptional states of cells harbouring identical genomes. The present model of switching regulation includes the bistable expression of a master switch gene that is controlled by multiple transcriptional feedback loops. Here, we show that chromatin-modifying enzymes constitute an additional important regulatory layer of morphogenetic switching. We identify eight chromatin modifiers as switching modulators. Extensive epistasis analysis maps them into at least two independent signalling pathways overlaying the known transcriptional network. Interestingly, we identify the conserved Set3/Hos2 histone deacetylase complex as a key regulator relying on the methylation status of histone H3 lysine 4 for switching modulation. Furthermore, we demonstrate that opaque to white switching is facilitated by the presence of adenine in vitro, but adenine has no effect on switching once the Set3/Hos2 complex is disrupted. Our observations postulate that chromatin modifications may serve as a means to integrate environmental or host stimuli through the underlying transcriptional circuits to determine cell fate in C. albicans.
机译:人类病原体白色念珠菌能够在称为白和不透明的两种不同细胞类型之间进行可逆转换,这被认为是具有相同基因组的细胞的不同转录状态。本开关调节模型包括由多个转录反馈环控制的主开关基因的双稳态表达。在这里,我们表明染色质修饰酶构成了形态发生转换的另一个重要调控层。我们确定了八种染色质修饰剂作为开关调节剂。广泛的上位性分析将它们映射到覆盖已知转录网络的至少两个独立的信号传导途径。有趣的是,我们确定保守的Set3 / Hos2组蛋白脱乙酰基酶复合物是依赖于组蛋白H3赖氨酸4的甲基化状态来进行调节的关键调节剂。此外,我们证明了体外腺嘌呤的存在促进了从不透明到白色的转换,但是一旦Set3 / Hos2复合物被破坏,腺嘌呤对转换没有影响。我们的观察结果推测,染色质修饰可作为一种手段,通过潜在的转录途径整合环境或宿主刺激,从而确定白色念珠菌的细胞命运。

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