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An ectophosphatase activity in Candida parapsilosis influences the interaction of fungi with epithelial cells

机译:副念珠菌中的外切磷酸酶活性影响真菌与上皮细胞的相互作用

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This study describes the biochemical characterization of a phosphatase activity present on the cell surface of Candida parapsilosis, a common cause of candidemia. Intact yeasts hydrolyzed p-nitrophenylphosphate to p-nitrophenol at a rate of 24.30+/-2.63 nmol p-nitrophenol h(-1) 10(-7) cells. The cell wall distribution of the Ca. parapsilosis enzyme was demonstrated by transmission electron microscopy. The duration of incubation of the yeast cells with the substrate and cell density influenced enzyme activity linearly. Values of V(max) and apparent K(m) for p-nitrophenylphosphate hydrolysis were 26.80+/-1.13 nmol p-nitrophenol h(-1) 10(-7) cells and 0.47+/-0.05 mM p-nitrophenylphosphate, respectively. The ectophosphatase activity was strongly inhibited at high pH as well as by classical inhibitors of acid phosphatases, such as sodium orthovanadate, sodium molybdate, sodium fluoride, and inorganic phosphate, the final product of the reaction. Only the inhibition caused by sodium orthovanadate was irreversible. Different phophorylated amino acids were used as substrates for the Ca. parapsilosis ectoenzyme, and the highest rate of phosphate hydrolysis was achieved using phosphotyrosine. A direct relationship between ectophosphatase activity and adhesion to host cells was established. In these assays, irreversible inhibition of enzyme activity resulted in decreased levels of yeast adhesion to epithelial cells.
机译:这项研究描述了念珠菌念珠菌(一种念珠菌血症的常见原因)的细胞表面存在的磷酸酶活性的生化特征。完整的酵母以24.30 +/- 2.63 nmol对硝基苯酚h(-1)10(-7)细胞的速率将对硝基苯磷酸水解为对硝基苯酚。 Ca的细胞壁分布。透射电镜证实了副滑落酶。酵母细胞与底物的孵育时间和细胞密度线性影响酶的活性。对硝基苯磷酸水解的V(max)和表观K(m)值分别为26.80 +/- 1.13 nmol对硝基苯酚h(-1)10(-7)细胞和0.47 +/- 0.05 mM对硝基苯磷酸酯。在高pH值以及经典的酸性磷酸酶抑制剂(例如原钒酸钠,钼酸钠,氟化钠和无机磷酸酯)中,胞外磷酸酶的活性受到强烈抑制,而后者是反应的最终产物。只有原钒酸钠引起的抑制作用是不可逆的。不同的磷酸化氨基酸被用作Ca的底物。使用磷酸酪氨酸可达到最高水平的磷酸水解。建立了外磷酸酶活性与对宿主细胞的粘附之间的直接关系。在这些测定中,酶活性的不可逆抑制导致酵母菌粘附到上皮细胞的水平降低。

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