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Some biological features of Candida albicans mutants for genes coding fungal proteins containing the CFEM domain

机译:白色念珠菌突变体的一些生物学特征,用于编码包含CFEM域的真菌蛋白的基因

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Several biological features of Candida albicans genes (PGA10, RBT5 and CSA1) coding for putative polypeptide species belonging to a subset of fungal proteins containing an eight-cysteine domain referred as common in several fungal extracellular membrane (CFEM) are described. The deletion of these genes resulted in a cascade of pleiotropic effects. Thus, mutant strains exhibited higher cell surface hydrophobicity levels and an increased ability to bind to inert or biological substrates. Confocal scanning laser microscopy using concanavalin A-Alexafluor 488 (which binds to mannose and glucose residues) and FUN-1 (a cytoplasmic fluorescent probe for cell viability) dyes showed that mutant strains formed thinner and more fragile biofilms. These apparently contained lower quantities of extracellular matrix material and less metabolically active cells than their parental strain counterpart, although the relative percentage of mycelial forms was similar in all cases. The cell surface of C. albicans strains harbouring deletions for genes coding CFEM-domain proteins appeared to be severely altered according to atomic force microscopy observations. Assessment of the relative gene expression within individual C. albicans cells revealed that CFEM-coding genes were upregulated in mycelium, although these genes were shown not to affect virulence in animal models. Overall, this study has demonstrated that CFEM domain protein-encoding genes are pleiotropic, influencing cell surface characteristics and biofilm formation.
机译:描述了白色假丝酵母基因的几种生物学特征(PGA10,RBT5和CSA1),这些基因编码假定的多肽种类,这些多肽种类属于包含八个半胱氨酸结构域的真菌蛋白的子集,在几种真菌细胞外膜(CFEM)中是常见的。这些基因的缺失导致多效性作用的级联。因此,突变菌株表现出较高的细胞表面疏水性水平和增加的结合惰性或生物底物的能力。使用伴刀豆球蛋白A-Alexafluor 488(与甘露糖和葡萄糖残基结合)和FUN-1(细胞活力的细胞质荧光探针)染料的共聚焦扫描激光显微术显示突变株形成了更薄和更脆弱的生物膜。尽管菌丝体形式的相对百分比在所有情况下都是相似的,但它们显然含有比其亲代菌株更低的细胞外基质物质含量和更少的代谢活性细胞。根据原子力显微镜观察,带有编码CFEM域蛋白的基因缺失的白色念珠菌菌株的细胞表面似乎发生了严重变化。对单个白色念珠菌细胞内相对基因表达的评估表明,尽管在动物模型中显示这些基因不影响毒力,但编码菌丝体中的CFEM编码基因却被上调。总的来说,这项研究表明CFEM域蛋白编码基因具有多效性,影响细胞表面特征和生物膜形成。

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