Pitarch Aida, Sánchez Miguel, Nombela César, Gil Concha
Departamento de Microbiología II, Facultad de Farmacia, Universidad Complutense de Madrid, 28040 Madrid, Spain.
Mol Cell Proteomics. 2002 Dec;1(12):967-82. doi: 10.1074/mcp.m200062-mcp200.
The cell wall proteins of Candida albicans play a key role in morphogenesis and pathogenesis and might be potential target sites for new specific antifungal drugs. However, these proteins are difficult to analyze because of their high heterogeneity, interconnections with wall polysaccharides (mannan, glucan, and chitin), low abundance, low solubility, and hydrophobic nature. Here we report a subproteomic approach for the study of the cell wall proteins (CWPs) from C. albicans yeast and hyphal forms. Most of the mannoproteins present in this compartment were extracted by cell wall fractionation according to the type of interactions that they establish with other structural components. CWPs were solubilized from isolated cell walls by hot SDS and dithiothreitol treatment followed by extraction either by mild alkali conditions or by enzymatic treatment with glucanases and chitinases. These highly enriched cell wall fractions were analyzed by two-dimensional PAGE, showing that a large number of proteins are involved in cell wall construction and that the wall remodeling that occurs during germ tube formation is related to changes in the composition of CWPs. We suggest that the CWP-chitin linkage is an important retention mechanism of CWPs in C. albicans mycelial forms. This article also highlights the usefulness of the combination of sequential fractionation and two-dimensional PAGE followed by Western blotting using specific antibodies against known CWPs in the characterization of incorporation mechanisms of such CWPs into the cell wall and of their interactions with other wall components. Mass spectrometry analyses have allowed the identification of several cell surface proteins classically associated with both the cell wall and other compartments. The physiological significance of the dual location of these moonlighting proteins is also discussed. This approach is therefore a powerful tool for obtaining a comprehensive and integrated view of the cell wall proteome.
白色念珠菌的细胞壁蛋白在形态发生和致病过程中起关键作用,可能是新型特异性抗真菌药物的潜在靶点。然而,由于这些蛋白具有高度异质性、与壁多糖(甘露聚糖、葡聚糖和几丁质)相互连接、丰度低、溶解度低以及具有疏水性,因此难以分析。在此,我们报告一种亚蛋白质组学方法,用于研究白色念珠菌酵母型和菌丝型的细胞壁蛋白(CWPs)。根据该隔室中存在的大多数甘露糖蛋白与其他结构成分建立的相互作用类型,通过细胞壁分级分离将其提取出来。通过热SDS和二硫苏糖醇处理从分离的细胞壁中溶解CWPs,随后通过温和碱性条件或用葡聚糖酶和几丁质酶进行酶处理来提取。通过二维PAGE分析这些高度富集的细胞壁级分,结果表明大量蛋白质参与细胞壁构建,并且在芽管形成过程中发生的壁重塑与CWPs组成的变化有关。我们认为CWP-几丁质连接是CWPs在白色念珠菌菌丝体形式中的重要保留机制。本文还强调了顺序分级分离与二维PAGE相结合,随后使用针对已知CWPs的特异性抗体进行蛋白质印迹,在表征此类CWPs掺入细胞壁的机制及其与其他壁成分的相互作用方面的有用性。质谱分析已鉴定出几种经典地与细胞壁和其他隔室相关的细胞表面蛋白。还讨论了这些兼职蛋白双重定位的生理意义。因此,该方法是获得细胞壁蛋白质组全面综合视图的有力工具。