Division of Infectious Diseases, Department of Medicine, Stony Brook University, Stony Brook, New York, USA.
Department of Medicine, Yale School of Medicine, New Haven, Connecticut, USA.
Sci Rep. 2019 Mar 25;9(1):5052. doi: 10.1038/s41598-019-41513-6.
Candida auris is an emerging multi-drug resistant yeast that causes systemic infections. Here we show that C. auris undergoes replicative aging (RA) that results from asymmetric cell division and causes phenotypic differences between mother and daughter cells similar to other pathogenic yeasts. Importantly, older C. auris cells (10 generations) exhibited higher tolerance to fluconazole (FLC), micafungin, 5- flucytosine and amphotericin B compared to younger (0-3 generation) cells. Increased FLC tolerance was associated with increased Rhodamine 6G (R6G) efflux and therapeutic failure of FLC in a Galleria infection model. The higher efflux in the older cells correlated with overexpression of the efflux pump encoding gene CDR1 (4-fold). In addition, 8-fold upregulation of the azole target encoding gene ERG11 was noted in the older cells. Analysis of genomic DNA from older cells by qPCR indicates that transient gene duplication of CDR1 and ERG11 causes the observed age-dependent enhanced FLC tolerance in C. auris strains. Furthermore, older cells exhibited a thickened cell wall, decreased neutrophil killing (24% vs 50%), increased epithelial cell adhesion (31.6% vs 17.8%) and upregulation of adhesin protein Als5p. Thus, this study demonstrates that transient gene duplication can occur during RA, causing increased FLC tolerance in old C. auris cells.
耳念珠菌是一种新兴的多药耐药酵母菌,可引起全身感染。在这里,我们表明耳念珠菌经历了复制衰老(RA),这是由不对称细胞分裂引起的,并导致母细胞和子细胞之间出现类似于其他致病性酵母菌的表型差异。重要的是,与年轻(0-3 代)细胞相比,较老的耳念珠菌细胞(10 代)对氟康唑(FLC)、米卡芬净、5-氟胞嘧啶和两性霉素 B 的耐受性更高。增加的 FLC 耐受性与罗丹明 6G(R6G)外排增加以及 FLC 在大蜡螟感染模型中的治疗失败有关。较老细胞中的外排增加与外排泵编码基因 CDR1 的过度表达(4 倍)相关。此外,在较老细胞中还观察到唑类靶基因 ERG11 的 8 倍上调。对较老细胞的基因组 DNA 进行 qPCR 分析表明,CDR1 和 ERG11 的瞬时基因复制导致了耳念珠菌菌株中观察到的与年龄相关的增强 FLC 耐受性。此外,较老的细胞表现出细胞壁增厚、中性粒细胞杀伤减少(24%对 50%)、上皮细胞黏附增加(31.6%对 17.8%)和黏附蛋白 Als5p 的上调。因此,这项研究表明,在 RA 过程中可能会发生瞬时基因复制,导致较老的耳念珠菌细胞中 FLC 耐受性增加。