Zupancic Margaret L, Frieman Matthew, Smith David, Alvarez Richard A, Cummings Richard D, Cormack Brendan P
Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Mol Microbiol. 2008 May;68(3):547-59. doi: 10.1111/j.1365-2958.2008.06184.x.
The Candida glabrata genome encodes at least 23 members of the EPA (epithelial adhesin) family responsible for mediating adherence to host cells. To better understand the mechanism by which the Epa proteins contribute to pathogenesis, we have used glycan microarray analysis to characterize their carbohydrate-binding specificities. Using Saccharomyces cerevisiae strains surface-expressing the N-terminal ligand-binding domain of the Epa proteins, we found that the three Epa family members functionally identified as adhesins in Candida glabrata (Epa1, Epa6 and Epa7) bind to ligands containing a terminal galactose residue. However, the specificity of the three proteins for glycans within this class varies, with Epa6 having a broader specificity range than Epa1 or Epa7. This result is intriguing given the close homology between Epa6 and Epa7, which are 92% identical at the amino acid level. We have mapped a five-amino-acid region within the N-terminal ligand-binding domain that accounts for the difference in specificity of Epa6 and Epa7 and show that these residues contribute to adherence to both epithelial and endothelial cell lines in vitro.
光滑念珠菌基因组编码至少23个EPA(上皮黏附素)家族成员,这些成员负责介导与宿主细胞的黏附。为了更好地理解Epa蛋白促进发病机制的方式,我们使用聚糖微阵列分析来表征它们的碳水化合物结合特异性。通过使用表面表达Epa蛋白N端配体结合结构域的酿酒酵母菌株,我们发现光滑念珠菌中功能上被鉴定为黏附素的三个Epa家族成员(Epa1、Epa6和Epa7)与含有末端半乳糖残基的配体结合。然而,这三种蛋白对这类聚糖的特异性各不相同,Epa6的特异性范围比Epa1或Epa7更广。鉴于Epa6和Epa7之间的密切同源性(氨基酸水平上92%相同),这一结果很有趣。我们已经在N端配体结合结构域内定位了一个五氨基酸区域,该区域解释了Epa6和Epa7特异性的差异,并表明这些残基有助于体外对上皮和内皮细胞系的黏附。