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Identification and characterization of TUP1-regulated genes in Candida albicans.

机译:白念珠菌中TUP1调控基因的鉴定和表征。

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摘要

TUP1 encodes a transcriptional repressor that negatively controls filamentous growth in Candida albicans. Using subtractive hybridization, we identified six genes, termed repressed by TUP1 (RBT), whose expression is regulated by TUP1. One of the genes (HWP1) has previously been characterized, and a seventh TUP1-repressed gene (WAP1) was recovered due to its high similarity to RBT5. These genes all encode secreted or cell surface proteins, and four out of the seven (HWP1, RBT1, RBT5, and WAP1) encode putatively GPI-modified cell wall proteins. The remaining three, RBT2, RBT4, and RBT7, encode, respectively, an apparent ferric reductase, a plant pathogenesis-related protein (PR-1), and a putative secreted RNase T2. The expression of RBT1, RBT4, RBT5, HWP1, and WAP1 was induced in wild-type cells during the switch from the yeast form to filamentous growth, indicating the importance of TUP1 in regulating this process and implicating the RBTs in hyphal-specific functions. We produced knockout strains in C. albicans for RBT1, RBT2, RBT4, RBT5, and WAP1 and detected no phenotypes on several laboratory media. However, two animal models for C. albicans infection, a rabbit cornea model and a mouse systemic infection model, revealed that rbt1Delta and rbt4Delta strains had significantly reduced virulence. TUP1 appears, therefore, to regulate many genes in C. albicans, a significant fraction of which are induced during filamentous growth, and some of which participate in pathogenesis.
机译:TUP1编码一个转录抑制因子,该转录抑制因子负面控制白色念珠菌中的丝状生长。使用减性杂交,我们鉴定了六个基因,这些基因被TUP1(RBT)抑制,其表达受TUP1调控。其中一个基因(HWP1)先前已被鉴定,由于其与RBT5的高度相似性,第七个TUP1抑制基因(WAP1)被回收。这些基因均编码分泌的或细胞表面蛋白,并且七个基因中的四个(HWP1,RBT1,RBT5和WAP1)编码经GPI修饰的细胞壁蛋白。其余三个RBT2,RBT4和RBT7分别编码表观铁还原酶,植物病程相关蛋白(PR-1)和假定分泌的RNase T2。在从酵母形式向丝状生长的转变过程中,野生型细胞中诱导了RBT1,RBT4,RBT5,HWP1和WAP1的表达,这表明TUP1在调节此过程并将RBT参与菌丝特异性功能中的重要性。我们在白色念珠菌中产生了RBT1,RBT2,RBT4,RBT5和WAP1的敲除菌株,并在几种实验室培养基上未检测到表型。但是,两个用于白色念珠菌感染的动物模型,一个兔子角膜模型和一个小鼠全身感染模型显示,rbt1Delta和rbt4Delta毒株的毒力明显降低。因此,TUP1似乎可以调节白色念珠菌中的许多基因,其中很大一部分是在丝状生长过程中诱导的,其中一些参与发病机理。

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