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近平滑念珠菌中ATC1和NTC1基因的纯合缺失消除了海藻糖酶活性,并影响细胞生长、糖代谢、应激抗性、感染性和生物膜形成。

Homozygous deletion of ATC1 and NTC1 genes in Candida parapsilosis abolishes trehalase activity and affects cell growth, sugar metabolism, stress resistance, infectivity and biofilm formation.

作者信息

Sánchez-Fresneda Ruth, Guirao-Abad José P, Martinez-Esparza María, Maicas Sergi, Valentín Eulogio, Argüelles Juan-Carlos

机构信息

Área de Microbiología, Facultad de Biología, Universidad de Murcia, 30100 Murcia, Spain; IMIB-Arrixaca, Spain; Departamento de Microbiología y Ecología, Facultad de Farmacia, Universidad de Valencia, 46100 Burjassot, Valencia, Spain.

Área de Microbiología, Facultad de Biología, Universidad de Murcia, 30100 Murcia, Spain; IMIB-Arrixaca, Spain.

出版信息

Fungal Genet Biol. 2015 Dec;85:45-57. doi: 10.1016/j.fgb.2015.10.007. Epub 2015 Oct 31.

Abstract

A double homozygous atc1Δ/atc1Δ/ntc1Δ/ntc1Δ mutant (atc1Δ/ntc1Δ KO) was constructed in the pathogen opportunistic yeast Candida parapsilosis by disruption of the two chromosomal alleles coding for NTC1 gene (encoding a neutral trehalase) in a Cpatc1Δ/atc1Δ background (atc1Δ KO strain, deficient in acid trehalase). The Cpatc1Δ/ntc1Δ KO mutant failed to counteract the inability of Cpatc1Δ cells to metabolize exogenous trehalose and showed a similar growth pattern on several monosaccharides and disaccharides. However, upon prolonged incubation in either rich medium (YPD) or nutrient-starved medium the viability of Cpatc1Δ cells exhibited a sensitive phenotype, which was augmented by further CpNTC1/NTC1 disruption. Furthermore, Cpatc1Δ/ntc1Δ KO cells had difficulty in resuming active growth in fresh YPD. This homozygous mutant also lacked any in vitro measurable trehalase activity, whether acid or neutral, suggesting that a single gene codes for each enzyme. By contrast, in Cpatc1Δ/ntc1Δ KO strain the resistance to oxidative and heat stress displayed by atc1Δ mutant was suppressed. Cpatc1Δ/ntc1Δ KO cells showed a significant decrease in virulence as well as in the capacity to form biofilms. These results point to a major role for acid trehalase (Atc1p) in the pathobiology of C. parapsilosis, whereas the activity of neutral trehalase can only partially counteract Atc1p deficiency. They also support the use of ATC1 and NTC1 genes as interesting antifungal targets.

摘要

通过在Cpatc1Δ/atc1Δ背景(缺乏酸性海藻糖酶的atc1Δ敲除菌株)中破坏编码NTC1基因(编码一种中性海藻糖酶)的两个染色体等位基因,在机会致病性酵母近平滑念珠菌中构建了双纯合atc1Δ/atc1Δ/ntc1Δ/ntc1Δ突变体(atc1Δ/ntc1Δ敲除株)。Cpatc1Δ/ntc1Δ敲除突变体无法抵消Cpatc1Δ细胞代谢外源性海藻糖的无能,并在几种单糖和双糖上表现出相似的生长模式。然而,在富含培养基(YPD)或营养饥饿培养基中长时间孵育后,Cpatc1Δ细胞的活力表现出敏感表型,进一步破坏CpNTC1/NTC1会增强这种表型。此外,Cpatc1Δ/ntc1Δ敲除细胞在新鲜YPD中难以恢复活跃生长。这种纯合突变体也缺乏任何可在体外测量的海藻糖酶活性,无论是酸性还是中性,这表明每种酶由单个基因编码。相比之下,在Cpatc1Δ/ntc1Δ敲除菌株中,atc1Δ突变体所表现出的对氧化应激和热应激的抗性受到抑制。Cpatc1Δ/ntc1Δ敲除细胞的毒力以及形成生物膜的能力均显著降低。这些结果表明酸性海藻糖酶(Atc1p)在近平滑念珠菌的病理生物学中起主要作用,而中性海藻糖酶的活性只能部分抵消Atc1p的缺陷。它们还支持将ATC1和NTC1基因用作有趣的抗真菌靶点。

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