Institut Pasteur, INRA, Unité Biologie et Pathogénicité Fongiques, Paris, France.
Institut Pasteur de Tunis, University of Tunis El Manar, Laboratoire de Microbiologie Moléculaire, Vaccinologie et Développement Biotechnologique, Tunis, Tunisia.
Cell Microbiol. 2018 Nov;20(11):e12890. doi: 10.1111/cmi.12890. Epub 2018 Aug 7.
Candida albicans is part of the human gastrointestinal (GI) microbiota. To better understand how C. albicans efficiently establishes GI colonisation, we competitively challenged growth of 572 signature-tagged strains (~10% genome coverage), each conditionally overexpressing a single gene, in the murine gut. We identified CRZ2, a transcription factor whose overexpression and deletion respectively increased and decreased early GI colonisation. Using clues from genome-wide expression and gene-set enrichment analyses, we found that the optimal activity of Crz2p occurs under hypoxia at 37°C, as evidenced by both phenotypic and transcriptomic analyses following CRZ2 genetic perturbation. Consistent with early colonisation of the GI tract, we show that CRZ2 overexpression confers resistance to acidic pH and bile salts, suggesting an adaptation to the upper sections of the gut. Genome-wide location analyses revealed that Crz2p directly modulates the expression of many mannosyltransferase- and cell-wall protein-encoding genes, suggesting a link with cell-wall function. We show that CRZ2 overexpression alters cell-wall phosphomannan abundance and increases sensitivity to tunicamycin, suggesting a role in protein glycosylation. Our study reflects the powerful use of gene overexpression as a complementary approach to gene deletion to identify relevant biological pathways involved in C. albicans interaction with the host environment.
白色念珠菌是人类胃肠道(GI)微生物群的一部分。为了更好地了解白色念珠菌如何有效地在胃肠道定植,我们在小鼠肠道中竞争性地挑战了 572 个标记基因(约占基因组的 10%)的 572 个特征标记株的生长,每个条件都过表达了单个基因。我们鉴定出了 CRZ2,这是一种转录因子,其过表达和缺失分别增加和减少了早期 GI 定植。通过全基因组表达和基因集富集分析提供的线索,我们发现 Crz2p 的最佳活性发生在 37°C 的缺氧条件下,这一点通过 CRZ2 基因扰动后的表型和转录组分析得到了证实。与胃肠道的早期定植一致,我们表明 CRZ2 的过表达赋予了对酸性 pH 和胆汁盐的抗性,这表明它适应了肠道的上部。全基因组定位分析表明,Crz2p 直接调节许多甘露糖基转移酶和细胞壁蛋白编码基因的表达,这表明它与细胞壁功能有关。我们表明,CRZ2 的过表达改变了细胞壁磷酸甘露聚糖的丰度,并增加了对衣霉素的敏感性,这表明它在蛋白质糖基化中起作用。我们的研究反映了基因过表达作为一种补充基因缺失的方法,用于鉴定与白色念珠菌与宿主环境相互作用相关的相关生物学途径的强大作用。