Department of Pathobiology, University of Illinois at Urbana-Champaign, Urbana, IL, United States of America.
PLoS One. 2022 Jul 8;17(7):e0269681. doi: 10.1371/journal.pone.0269681. eCollection 2022.
Fungal agglutinin-like sequence (Als) cell-surface glycoproteins, best characterized in Candida albicans, mediate adhesive and aggregative interactions with host cells, other microbes, and abiotic surfaces. Monoclonal antibodies (MAbs) specific for each C. albicans Als protein are valuable reagents for gaining insight into Als protein localization and function. This manuscript describes development and validation of MAbs specific for C. albicans Als2, as well as for C. albicans Als9-1 and Als9-2, two protein variants produced from the ALS9 locus. Native C. albicans ALS9 expression levels were not sufficiently high to produce detectable Als9 protein on the wild-type cell surface so MAb validation required production of overexpression strains, each featuring one of the two ALS9 alleles. An anti-Als2 MAb was raised against an N-glycosylated form of the protein immunogen, as well as an Endoglycosidase H-treated immunogen. The MAb raised against the N-glycosylated immunogen proved superior and immunolabeled C. albicans yeast cells and germ tubes, and the surface of Candida dubliniensis and Candida tropicalis yeasts. Als2 was visible on C. albicans yeast cells recovered from a murine model of oral candidiasis, demonstrating Als2 production both in vivo and in vitro. These new MAbs add to the collection of anti-Als MAbs that are powerful tools to better understand the role of Als proteins in C. albicans biology and pathogenesis.
真菌凝集素样序列 (Als) 细胞表面糖蛋白,在白念珠菌中得到了很好的描述,介导与宿主细胞、其他微生物和无生命表面的粘附和聚集相互作用。针对每种白念珠菌 Als 蛋白的单克隆抗体 (Mab) 是深入了解 Als 蛋白定位和功能的有价值的试剂。本文描述了针对白念珠菌 Als2 以及两个由 ALS9 基因座产生的蛋白变体 Als9-1 和 Als9-2 的单克隆抗体的开发和验证。白念珠菌 ALS9 的天然表达水平不够高,无法在野生型细胞表面检测到可检测的 Als9 蛋白,因此 MAb 验证需要产生过表达菌株,每个菌株都具有两个 ALS9 等位基因之一。针对 Als2 蛋白的 N 连接糖基化形式的免疫原和经内切糖苷酶 H 处理的免疫原产生了抗 Als2 MAb。针对 N-糖基化免疫原产生的 MAb 证明更优越,可免疫标记白念珠菌酵母细胞和发芽管,以及杜氏念珠菌和热带念珠菌的酵母表面。在口腔念珠菌病的小鼠模型中回收的白念珠菌酵母细胞中可见 Als2,表明 Als2 既在体内又在体外产生。这些新的 Mab 增加了抗 Als Mab 的集合,这些 Mab 是更好地了解 Als 蛋白在白念珠菌生物学和发病机制中的作用的有力工具。