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In Candida parapsilosis the ATC1 gene encodes for an acid trehalase involved in trehalose hydrolysis, stress resistance and virulence

机译:在副念珠菌中,ATC1基因编码一种与海藻糖水解,抗逆性和毒力有关的酸性海藻糖酶

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摘要

An ORF named CPAR2-208980 on contig 005809 was identified by screening a Candida parapsilosis genome data base. Its 67% identity with the acid trehalase sequence from C. albicans (ATC1) led us to designate it CpATC1. Homozygous mutants that lack acid trehalase activity were constructed by gene disruption at the two CpATC1 chromosomal alleles. Phenotypic characterization showed that atc1Δ null cells were unable to grow on exogenous trehalose as carbon source, and also displayed higher resistance to environmental challenges, such as saline exposure (1.2 M NaCl), heat shock (42°C) and both mild and severe oxidative stress (5 and 50 mM H2O2). Significant amounts of intracellular trehalose were specifically stored in response to the thermal upshift in both wild type and mutant strains. Analysis of their antioxidant activities revealed that catalase was only triggered in response to heat shock in atc1Δ cells, whereas glutathione reductase was activated upon mild oxidative stress in wild type and reintegrant strains, and in response to the whole set of stress treatments in the homozygous mutant. Furthermore, yeast cells with double CpATC1 deletion were significantly attenuated in non-mammalian infection models, suggesting that CpATC1 is required for the pathobiology of the fungus. Our results demonstrate the involvement of CpAtc1 protein in the physiological hydrolysis of external trehalose in C. parapsilosis, where it also plays a major role in stress resistance and virulence.
机译:通过筛选假丝酵母念珠菌基因组数据库,鉴定了重叠群005809上名为CPAR2-208980的ORF。它与白色念珠菌(ATC1)的酸性海藻糖酶序列具有67%的同一性,因此我们将其命名为CpATC1。缺乏酸性海藻糖酶活性的纯合突变体是通过在两个CpATC1染色体等位基因处的基因破坏而构建的。表型表征显示atc1Δ空细胞不能在外源海藻糖作为碳源上生长,并且还表现出对环境挑战的更高抵抗力,例如盐溶液(1.2 M NaCl),热休克(42°C)以及轻度和重度氧化应力(5和50 mM H2O2)。在野生型和突变菌株中,大量的细胞内海藻糖响应于热升华而被特异性地储存。对它们的抗氧化活性的分析表明,过氧化氢酶仅在atc1Δ细胞中响应于热激而被触发,而谷胱甘肽还原酶在野生型和重整合株中受到轻度氧化应激后被激活,并且在纯合突变体中响应于整套的应激处理。 。此外,具有双CpATC1缺失的酵母细胞在非哺乳动物感染模型中显着减毒,这表明CpATC1是真菌病理生物学所必需的。我们的研究结果表明CpAtc1蛋白参与了C. parapsilosis中外部海藻糖的生理水解,在抗逆性和毒力中也起着重要作用。

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