Department of Natural Sciences Lebanese American University, Byblos, Lebanon.
PLoS One. 2018 Mar 19;13(3):e0194403. doi: 10.1371/journal.pone.0194403. eCollection 2018.
We have previously characterized Pir32, a Candia albicans cell wall protein that we found to be involved in filamentation, virulence, chitin deposition, and resistance to oxidative stress. Other than defining the cell shape, the cell wall is critical for the interaction with the surrounding environment and the point of contact and interaction with the host surface. In this study, we applied tandem mass spectrometry combined with bioinformatics to investigate cell wall proteome changes in a pir32 null strain. A total of 16 and 25 proteins were identified exclusively in the null mutant strains grown under non-filamentous and filamentous conditions. These proteins included members of the PGA family with various functions, lipase and the protease involved in virulence, superoxide dismutases required for resisting oxidative stress, alongside proteins required for cell wall remodeling and synthesis such as Ssr1, Xog1, Dfg5 and Dcw1. In addition proteins needed for filamentation like Cdc42, Ssu81 and Ucf1, and other virulence proteins such as Als3, Rbt5, and Csa2 were also detected. The detection of these proteins in the mutant and their lack of detection in the wild type can explain the differential phenotypes previously observed.
我们之前已经对 Candida albicans 细胞壁蛋白 Pir32 进行了特征描述,发现其参与丝状生长、毒力、几丁质沉积以及对氧化应激的抗性。除了定义细胞形状外,细胞壁对于与周围环境的相互作用以及与宿主表面的接触点和相互作用至关重要。在这项研究中,我们应用串联质谱联用技术结合生物信息学,研究了 Pir32 缺失菌株的细胞壁蛋白质组变化。在非丝状和丝状生长条件下,仅在缺失突变株中鉴定出 16 种和 25 种蛋白。这些蛋白包括具有不同功能的 PGA 家族成员、参与毒力的脂肪酶和蛋白酶、抵抗氧化应激所需的超氧化物歧化酶,以及参与细胞壁重塑和合成的蛋白,如 Ssr1、Xog1、Dfg5 和 Dcw1。此外,还检测到了丝状生长所需的蛋白,如 Cdc42、Ssu81 和 Ucf1,以及其他毒力蛋白,如 Als3、Rbt5 和 Csa2。在突变体中检测到这些蛋白,而在野生型中未检测到这些蛋白,可以解释之前观察到的表型差异。