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首页> 外文期刊>Molecular Microbiology >A screen in Saccharomyces cerevisiae identified CaMCM1, an essential gene in Candida albicans crucial for morphogenesis.
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A screen in Saccharomyces cerevisiae identified CaMCM1, an essential gene in Candida albicans crucial for morphogenesis.

机译:在酿酒酵母中进行的筛选确定了CaMCM1,CaMCM1是白色念珠菌中对形态发生至关重要的必需基因。

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摘要

Morphogenesis in Saccharomyces cerevisiae and the pathogenic yeast Candida albicans is governed in part by the same molecular circuits. In S. cerevisiae, FLO11/MUC1 expression has been shown to be modulated by multiple signalling pathways required for pseudohyphal development. We have established a screen in S. cerevisiae to identify regulators of fungal development in C. albicans based on FLO11::lacZ expression as a reporter. This screen identified both known components of the mitogen-activated protein kinase (MAPK) cascade and the cAMP cascade that are important for hyphal development in C. albicans, as well as genes not yet known to be involved in morphogenesis. The Candida homologue of MCM1 is one of the novel factors identified in this screen as being important for morphogenesis. CaMcm1p levels do not vary significantly in different cell types and respond to an autoregulatory feedback mechanism, arguing that CaMcm1p activity is regulated by post-translational modifications. Both overexpression andrepression of this essential gene led to the induction of hyphae. Moreover, we found that the expression of HWP1, a hyphae-specific gene, was induced by repression of CaMCM1. The changes in morphology and HWP1 expression were not the result of a change in expression levels of NRG1 or TUP1, known repressors of hyphal development. Thus, CaMcm1p is a component of a hitherto unknown regulatory mechanism of hyphal growth.
机译:酿酒酵母和致病性酵母白色念珠菌的形态发生部分受相同分子回路控制。在酿酒酵母中,FLO11 / MUC1的表达已被假菌丝发育所需的多种信号通路调节。我们在酿酒酵母中建立了一个筛选器,以基于FLO11 :: lacZ表达的报告子来鉴定白色念珠菌真菌发育的调控因子。该筛选确定了有丝分裂原激活的蛋白激酶(MAPK)级联和cAMP级联的已知成分,这些成分对于白色念珠菌的菌丝发育很重要,还鉴定了尚未参与形态发生的基因。 MCM1的念珠菌同源物是在此屏幕中确定为对形态发生重要的新因素之一。 CaMcm1p的水平在不同的细胞类型中没有显着变化,并且对自调节反馈机制有反应,认为CaMcm1p的活性受翻译后修饰的调控。该必需基因的过度表达和抑制都导致了菌丝的诱导。此外,我们发现,通过抑制CaMCM1可以诱导HWP1(一种菌丝特异性基因)的表达。形态和HWP1表达的变化不是已知菌丝发育抑制因子NRG1或TUP1表达水平变化的结果。因此,CaMcm1p是迄今未知的菌丝生长调控机制的组成部分。

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