首页> 美国卫生研究院文献>FEMS Yeast Research >Adaptation of Candida albicans to growth on sorbose via monosomy of chromosome 5 accompanied by duplication of another chromosome carrying a gene responsible for sorbose utilization
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Adaptation of Candida albicans to growth on sorbose via monosomy of chromosome 5 accompanied by duplication of another chromosome carrying a gene responsible for sorbose utilization

机译:白色念珠菌通过5号染色体的单体切割适应山梨糖的生长并伴随另一条携带负责山梨糖利用的基因的染色体的复制

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摘要

Candida albicans, a fungus that normally inhabits the digestive tract and other mucosal surfaces, can become a pathogen in immunocompromised individuals, causing severe or even fatal infection. Mechanisms by which C. albicans can evade commonly used antifungal agents are not fully understood. We are studying a model system involving growth of C. albicans on toxic sugar sorbose, which represses synthesis of cell wall glucan and, as a result, kills fungi in a manner similar to drugs from the echinocandins class. Adaptation to sorbose occurs predominantly due to reversible loss of one homolog of chromosome 5 (Ch5), which results in up regulation of the metabolic gene SOU1 (SOrbose Utilization) on Ch4. Here, we show that growth on sorbose due to Ch5 monosomy can involve a facultative trisomy of a hybrid Ch4/7 that serves to increase copy number of the SOU1 gene. This shows that control of expression of SOU1 can involve multiple mechanisms; in this case, negative regulation and increase of gene copy number operating simultaneously in cell.
机译:白色念珠菌是一种通常生活在消化道和其他黏膜表面的真菌,可以成为免疫力低下的个体的病原体,引起严重甚至致命的感染。白色念珠菌逃避常用抗真菌剂的机制尚未完全了解。我们正在研究一种模型系统,该系统涉及在有毒糖山梨糖上生长白色念珠菌,该系统抑制细胞壁葡聚糖的合成,并因此以类似于棘孢菌素类药物的方式杀死真菌。对山梨糖的适应主要是由于5号染色体(Ch5)的一个同源物的可逆损失,导致Ch4上的代谢基因SOU1(山梨糖利用)上调。在这里,我们显示由于Ch5单体性在山梨糖上的生长可能涉及杂合性Ch4 / 7的兼性三体性,该杂合性三体性用于增加SOU1基因的拷贝数。这表明对SOU1表达的控制可能涉及多种机制。在这种情况下,负调控和基因拷贝数的增加在细胞中同时起作用。

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