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白色念珠菌Als2p和Als4p黏附素的分析表明Als家族内存在补偿性功能的可能性。

Analysis of the Candida albicans Als2p and Als4p adhesins suggests the potential for compensatory function within the Als family.

作者信息

Zhao X, Oh S-H, Yeater K M, Hoyer L L

机构信息

Department of Veterinary Pathobiology, University of Illinois at Urbana-Champaign, Urbana, IL 61802, USA.

出版信息

Microbiology (Reading). 2005 May;151(Pt 5):1619-1630. doi: 10.1099/mic.0.27763-0.

Abstract

The ALS (agglutinin-like sequence) gene family encodes eight large cell-surface glycoproteins. The work presented here focuses on Als2p and Als4p, and is part of a larger effort to deduce the function of each Als protein. Both ALS4 alleles were deleted from the Candida albicans genome and the phenotype of the mutant strain (als4Delta/als4Delta; named 2034) studied. Loss of Als4p slowed germ tube formation of cells grown in RPMI 1640 medium and resulted in decreased adhesion of C. albicans to vascular endothelial cells. Loss of Als4p did not affect adhesion to buccal epithelial cells, biofilm formation in a catheter model, or adhesion to or destruction of oral reconstituted human epithelium (RHE). Although deletion of one ALS2 allele was achieved readily, a strain lacking the second allele was not identified despite screening thousands of transformants. The remaining ALS2 allele was placed under control of the C. albicans MAL2 promoter to create an als2Delta/PMAL2-ALS2 strain (named 2342). Real-time RT-PCR analysis of strain 2342 grown in glucose-containing medium (non-inducing conditions) showed that although ALS2 transcript levels were greatly reduced compared to wild-type cells, some ALS2 transcript remained. The decreased ALS2 expression levels were sufficient to slow germ tube formation in RPMI 1640 and Lee medium, reduce adhesion to vascular endothelial cells and to RHE, decrease RHE destruction, and impair biofilm formation. Growth of strain 2342 in maltose-containing medium (inducing conditions) restored the wild-type phenotype in all assays. Real-time RT-PCR analysis demonstrated that in maltose-containing medium, strain 2342 overexpressed ALS2 compared to wild-type cells; however no overexpression phenotype was apparent. Microarray analysis revealed little transcriptional response to ALS4 deletion, but showed twofold up-regulation of orf19.4765 in the glucose-medium-grown als2Delta/PMAL2-ALS2 strain. orf19.4765 encodes a protein with features of a glycosylated cell wall protein with similarity to Saccharomyces cerevisiae Ccw12p, although initial analysis suggested functional differences between the two proteins. Real-time RT-PCR measurement of ALS2 and ALS4 transcript copy number showed a 2.8-fold increase in ALS2 expression in the als4Delta/als4Delta strain and a 3.2-fold increase in ALS4 expression in the als2Delta/PMAL2-ALS2 strain, suggesting the potential for compensatory function between these related proteins.

摘要

ALS(类凝集素序列)基因家族编码8种大型细胞表面糖蛋白。本文介绍的工作聚焦于Als2p和Als4p,是为推断每种Als蛋白功能而开展的更大规模研究的一部分。从白色念珠菌基因组中删除了两个ALS4等位基因,并对突变菌株(als4Δ/als4Δ;命名为2034)的表型进行了研究。Als4p的缺失减缓了在RPMI 1640培养基中生长的细胞的芽管形成,并导致白色念珠菌对血管内皮细胞的粘附减少。Als4p的缺失不影响对颊上皮细胞的粘附、导管模型中的生物膜形成,或对口腔重组人上皮(RHE)的粘附或破坏。虽然很容易实现一个ALS2等位基因的缺失,但尽管筛选了数千个转化体,仍未鉴定出缺乏第二个等位基因的菌株。将剩余的ALS2等位基因置于白色念珠菌MAL2启动子的控制下,以创建一个als2Δ/PMAL2-ALS2菌株(命名为2342)。对在含葡萄糖培养基(非诱导条件)中生长的2342菌株进行实时RT-PCR分析表明,虽然与野生型细胞相比,ALS2转录水平大幅降低,但仍有一些ALS2转录本留存。ALS2表达水平的降低足以减缓在RPMI 1640和Lee培养基中的芽管形成,减少对血管内皮细胞和RHE的粘附,降低RHE的破坏,并损害生物膜形成。2342菌株在含麦芽糖培养基(诱导条件)中的生长在所有检测中都恢复了野生型表型。实时RT-PCR分析表明,在含麦芽糖培养基中,与野生型细胞相比,2342菌株中ALS2过表达;然而,没有明显的过表达表型。微阵列分析显示对ALS4缺失几乎没有转录反应,但显示在葡萄糖培养基中生长的als2Δ/PMAL2-ALS2菌株中orf19.4765上调了两倍。orf19.4765编码一种具有糖基化细胞壁蛋白特征的蛋白质,与酿酒酵母Ccw12p相似,尽管初步分析表明这两种蛋白质之间存在功能差异。对ALS2和ALS4转录本拷贝数的实时RT-PCR测量显示,在als4Δ/als4Δ菌株中ALS2表达增加了2.8倍,在als2Δ/PMAL2-ALS2菌株中ALS4表达增加了3.2倍,表明这些相关蛋白之间可能存在补偿功能。

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