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Multiple functions of DOA1 in Candida albicans

机译:DOA1在念珠菌念珠子的多种功能

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While searching for regulators of virulence attributes of the human-pathogenic fungus Candida albicans, a gene was identified similar to the genes encoding the mammalian phospholipase A2-activating protein (PLAP) and the Saccharomyces cerevisiae protein Doa1, which is known to play a key role during ubiquitin (Ub)-dependent protein degradation. All three proteins contain WD-repeats. Both PLAP and CaDoa1 contain a mellitin-like sequence with a central ‘KVL’. This mellitin-like sequence was shown to be necessary for full function of CaDoa1. CaDOA1 was expressed under all conditions investigated. Gene disruption of CaDOA1 caused phenotypes including modified colony morphologies, temperature sensitivity, reduced secretion of hydrolytic enzymes and hypersensitivity to various compounds such as propranolol, butanol, caffeine, chelators, azoles, nocodazole and cadmium. Strikingly, mutants lacking DOA1 were filamentous and grew as pseudohyphae and true hyphae under conditions that normally support yeast growth. Transcriptional profiling of Δdoa1 indicated that several genes associated with Ub-mediated proteolysis, including CDC48 and UBI4, are upregulated. These data suggest that DOA1 of C. albicans, like its orthologue in S. cerevisiae, is associated with Ub-mediated proteolysis and has multiple functions. However, some functions of CaDoa1 seem to be unique for C. albicans. These results support the hypothesis that Ub-mediated proteolysis plays an important role in the regulation of morphology in C. albicans.
机译:在寻找人致病性真菌念珠菌念珠菌的毒力属性的调节因子的同时,鉴定了一种基因,其类似于编码哺乳动物磷脂酶A2-活化蛋白(PLAP)和酿酒酵母蛋白DOA1的基因,这已知是发挥关键作用在泛素(UB) - 依赖性蛋白质降解期间。所有三种蛋白质含有WD重复。 PLAP和CADOA1都含有含有中央'kVL'的梅里汀样序列。显示这种类似的蛋白质样序列是CadoA1的全功能所必需的。 CADOA1在所有调查的条件下表达。 CADOA1的基因破坏引起表型,包括改性菌落形态,温度敏感性,降低水解酶的分泌和对各种化合物,如普萘洛尔,丁醇,咖啡因,螯合剂,唑类,Nocodazole和镉。引人注目的是,缺乏DOA1的突变体是丝状的,并在通常支持酵母生长的条件下作为假鼠和真正的菌丝生长。 ΔDA1的转录分析表明,上调了与UB介导的蛋白水解相关的几个基因,包括CDC48和UBI4。这些数据表明,与其在酿酒酵母中的正原肠同源中的C.古典人的DOA1与UB介导的蛋白水解相关,并且具有多种功能。然而,CADOA1的一些功能似乎是C. albicans的独特之作。这些结果支持UB介导的蛋白水解在C. albicans的形态调节中起重要作用的假设。

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