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白色念珠菌菌丝壁蛋白1(HWP1)基因型对生物膜形成及真菌对小胶质细胞敏感性的影响

Impact of Candida albicans hyphal wall protein 1 (HWP1) genotype on biofilm production and fungal susceptibility to microglial cells.

作者信息

Orsi Carlotta F, Borghi Elisa, Colombari Bruna, Neglia Rachele G, Quaglino Daniela, Ardizzoni Andrea, Morace Giulia, Blasi Elisabetta

机构信息

Department of Health Sciences, University of Milan, Polo Universitario San Paolo, Via Di Rudinì 8 - Blocco C, 8° piano, 20142 Milano, Italy; Department of Diagnostics, Clinical and Public Health Medicine, University of Modena and Reggio Emilia, Via del Pozzo 71, 41124 Modena, Italy.

Department of Health Sciences, University of Milan, Polo Universitario San Paolo, Via Di Rudinì 8 - Blocco C, 8° piano, 20142 Milano, Italy.

出版信息

Microb Pathog. 2014 Apr-May;69-70:20-7. doi: 10.1016/j.micpath.2014.03.003. Epub 2014 Mar 28.

Abstract

The hyphal wall protein 1 (HWP1) gene of Candida albicans encodes for a fungal cell wall protein, required for hyphal development and yeast adhesion to epithelial cells; yet, its role in pathogenesis remains largely unknown. In the present study, we analyzed two C. albicans laboratory strains, the DAY286 (HWP1/HWP1) and the null mutant FJS24 (hwp1/hwp1) and six clinical isolates [3 harbouring the homozygous HWP1 gene (HWP1/HWP1) and 3 the heterologous gene (HWP1/hwp1)]. Biofilm production, fungal HWP1 mRNA levels and ultrastructural morphology were investigated; also, the susceptibility of these strains to microglial cells was evaluated, in terms of fungal damage and immune cell-mediated secretory response. When comparing the two laboratory strains, biofilm was produced to a similar extent independently on the genetic background, while the susceptibility to microglial cell-mediated damage was higher in the hwp1/hwp1 mutant than in the HWP1/HWP1 counterpart. Also, transmission electron microscopy revealed differences between the two in terms of abundance in surface adhesin-like structures, fungal cell wall shape and intracellular granules. When comparing the clinical isolates grouped according to their HWP1 genotype, reduced biofilm production and increased susceptibility to microglial cell-mediated damage occurred in the HWP1/hwp1 isolates with respect to the HWP1/HWP1 counterparts; furthermore, upon exposure to microglial cells, the HWP1/HWP1 isolates, but not the HWP1/hwp1 counterpart, showed enhanced HWP1 mRNA levels. Finally, both laboratory and clinical isolates exhibited reduced ability to stimulate TNFα and nitric oxide production by microglial cells in the case of heterozygous or null mutant HWP1 genotype. Overall, these data indicate that C. albicans HWP1 genotype influences pathogen morphological structure as well as its interaction with microglial cells, while fungal biofilm production results unaffected, thus arguing on its role as virulence factor that directly affects host mediated defences.

摘要

白色念珠菌的菌丝壁蛋白1(HWP1)基因编码一种真菌细胞壁蛋白,该蛋白是菌丝发育和酵母黏附上皮细胞所必需的;然而,其在发病机制中的作用仍 largely未知。在本研究中,我们分析了两株白色念珠菌实验室菌株,即DAY286(HWP1/HWP1)和缺失突变体FJS24(hwp1/hwp1),以及六株临床分离株[3株携带纯合HWP1基因(HWP1/HWP1)和3株携带异源基因(HWP1/hwp1)]。研究了生物膜形成、真菌HWP1 mRNA水平和超微结构形态;此外,根据真菌损伤和免疫细胞介导的分泌反应,评估了这些菌株对小胶质细胞的敏感性。比较这两株实验室菌株时,无论遗传背景如何,生物膜形成程度相似,而hwp1/hwp1突变体对小胶质细胞介导损伤的敏感性高于HWP1/HWP1对应菌株。此外,透射电子显微镜显示两者在表面黏附素样结构的丰度、真菌细胞壁形状和细胞内颗粒方面存在差异。比较根据其HWP1基因型分组的临床分离株时,与HWP1/HWP1对应菌株相比,HWP1/hwp1分离株的生物膜形成减少,对小胶质细胞介导损伤的敏感性增加;此外,暴露于小胶质细胞后,HWP1/HWP1分离株而非HWP1/hwp1对应菌株显示HWP1 mRNA水平升高。最后,在HWP1基因型为杂合或缺失突变的情况下,实验室和临床分离株刺激小胶质细胞产生TNFα和一氧化氮的能力均降低。总体而言,这些数据表明白色念珠菌HWP1基因型影响病原体的形态结构及其与小胶质细胞的相互作用,而真菌生物膜形成不受影响,因此表明其作为直接影响宿主介导防御的毒力因子的作用。

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