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Bst1 is required for Candida albicans infecting host via facilitating cell wall anchorage of Glycosylphosphatidyl inositol anchored proteins

机译:Bst1是白色念珠菌通过促进糖基磷脂酰肌醇锚定蛋白的细胞壁锚定感染宿主所必需的

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摘要

Glycosylphosphatidyl inositol anchored proteins (GPI-APs) on fungal cell wall are essential for invasive infections. While the function of inositol deacylation of GPI-APs in mammalian cells has been previously characterized the impact of inositol deacylation in fungi and implications to host infection remains largely unexplored. Herein we describe our identification of BST1, an inositol deacylase of GPI-Aps in Candida albicans, was critical for GPI-APs cell wall attachment and host infection. BST1-deficient C. albicans (bst1Δ/Δ) was associated with severely impaired cell wall anchorage of GPI-APs and subsequen unmasked β-(1,3)-glucan. Consistent with the aberrant cell wall structures, bst1Δ/Δ strain did not display an invasive ability and could be recognized more efficiently by host immune systems. Moreover, BST1 null mutants or those expressing Bst1 variants did not display inositol deacylation activity and exhibited severely attenuated virulence and reduced organic colonization in a murine systemic candidiasis model. Thus, Bst1 can facilitate cell wall anchorage of GPI-APs in C. albicans by inositol deacylation, and is critical for host invasion and immune escape.
机译:真菌细胞壁上的糖基磷脂酰肌醇锚定蛋白(GPI-APs)对于侵入性感染至关重要。尽管以前已经表征了哺乳动物细胞中GPI-AP的肌醇脱酰作用,但在真菌中肌醇脱酰作用的影响及其对宿主感染的影响仍未得到充分研究。在这里,我们描述了我们的鉴定BST1,白色念珠菌中GPI-Aps的肌醇脱酰基酶,对GPI-APs细胞壁附着和宿主感染至关重要。缺乏BST1的白色念珠菌(bst1Δ/Δ)与GPI-AP的细胞壁锚定和后继未掩盖的β-(1,3)-葡聚糖严重受损有关。与异常的细胞壁结构一致,bst1Δ/Δ菌株没有显示侵袭能力,可以被宿主免疫系统更有效地识别。此外,在小鼠全身念珠菌病模型中,BST1空突变体或表达Bst1变体的突变体不显示肌醇脱酰活性,并显示出严重减毒的毒力和减少的有机定植。因此,Bst1可以通过肌醇脱酰基作用促进白色念珠菌中GPI-AP的细胞壁锚定,并且对于宿主入侵和免疫逃逸至关重要。

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