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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Systematic Genetic Screen for Transcriptional Regulators of the Candida albicans White-Opaque Switch
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Systematic Genetic Screen for Transcriptional Regulators of the Candida albicans White-Opaque Switch

机译:白念珠菌白-不透明开关转录调节子的系统遗传筛选。

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The human fungal pathogen Candida albicans can reversibly switch between two cell types named “white” and “opaque,” each of which is stable through many cell divisions. These two cell types differ in their ability to mate, their metabolic preferences and their interactions with the mammalian innate immune system. A highly interconnected network of eight transcriptional regulators has been shown to control switching between these two cell types. To identify additional regulators of the switch, we systematically and quantitatively measured white–opaque switching rates of 196 strains, each deleted for a specific transcriptional regulator. We identified 19 new regulators with at least a 10-fold effect on switching rates and an additional 14 new regulators with more subtle effects. To investigate how these regulators affect switching rates, we examined several criteria, including the binding of the eight known regulators of switching to the control region of each new regulatory gene, differential expression of the newly found genes between cell types, and the growth rate of each mutant strain. This study highlights the complexity of the transcriptional network that regulates the white–opaque switch and the extent to which switching is linked to a variety of metabolic processes, including respiration and carbon utilization. In addition to revealing specific insights, the information reported here provides a foundation to understand the highly complex coupling of white–opaque switching to cellular physiology.
机译:人类真菌病原体白色念珠菌可以可逆地在两种细胞类型之间切换,这些细胞类型称为“白色”和“不透明”,每种类型在许多细胞分裂中都是稳定的。这两种细胞的交配能力,代谢偏好以及与哺乳动物先天免疫系统的相互作用都不同。已经显示,由八个转录调节因子组成的高度互连的网络可控制这两种细胞类型之间的切换。为了确定开关的其他调节子,我们系统地和定量地测量了196个菌株的白不透明开关率,每个菌株都被特定的转录调节子删除。我们确定了19个新的稳压器,它们对开关速率的影响至少是10倍,另外14个新的稳压器则具有更微妙的影响。为了研究这些调控因子如何影响转换速率,我们研究了几种标准,包括八个已知的转换调控因子与每个新调控基因的控制区的结合,细胞类型之间新发现基因的差异表达以及细胞生长速率。每个突变株。这项研究强调了调控白不透明开关的转录网络的复杂性,以及开关与各种代谢过程(包括呼吸和碳利用)的关联程度。除了揭示特定的见解之外,此处报告的信息还为理解白不透明切换与细胞生理学的高度复杂耦合提供了基础。

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