Odds F C, Hierholzer J C
J Bacteriol. 1973 Apr;114(1):257-66. doi: 10.1128/jb.114.1.257-266.1973.
An acid phosphomonoesterase was purified 87-fold with a 4% recovery from disintegrated cells of Candida albicans by four stages of column chromatography. The purified enzyme was homogeneous by ultracentrifugal, electrophoretic, and immunological analyses. The fully corrected sedimentation coefficient, s(20,w), was calculated to be 5.51s. Molecular weight estimated from ultracentrifugal data was 124.3 x 10(3), from gel chromatography was 115 x 10(3), and from acrylamide gel electrophoretic data was 131 x 10(3). Buoyant density in sucrose was 1.15 g/cm(3). The enzyme was a mannoprotein with a hexose to protein ratio of 7: 1. The Michaelis constant of the enzyme was 3.3 x 10(-4) M for p-nitrophenyl phosphate as substrate, and the pH optimum was 4.5. The enzyme was competitively inhibited by inorganic phosphate (K(i) = 10(-4) M) and by arsenate (K(i) = 0.5 x 10(-4) M). A wide range of inorganic cations and anions did not affect enzyme activity, but Hg(2+), Cd(2+), and Cu(2+) were inhibitory. F(-) was also inhibitory at low concentrations, but the effect was reversed at higher concentrations. Phosphatase activity was completely destroyed by exposure of the enzyme to 70 C for 12 min, but was destroyed only slowly by proteolytic hydrolysis. The purified glycoprotein enzyme gave a line of identity with the "b" antigen of crude C. albicans homogenates in immunodiffusion and immunoelectrophoresis tests with sera from rabbits inoculated with intact C. albicans cells and from humans with proven candidiasis. Preliminary evidence suggests that the mannan and not the protein portion of the enzyme molecule is responsible for this antigenicity.
通过四个阶段的柱色谱法,从白色念珠菌破碎细胞中纯化出一种酸性磷酸单酯酶,纯化倍数为87倍,回收率为4%。通过超速离心、电泳和免疫学分析,纯化后的酶是均一的。经完全校正的沉降系数s(20,w)计算为5.51s。根据超速离心数据估计的分子量为124.3×10³,根据凝胶色谱法为115×10³,根据丙烯酰胺凝胶电泳数据为131×10³。在蔗糖中的浮力密度为1.15 g/cm³。该酶是一种甘露糖蛋白,己糖与蛋白质的比例为7:1。以对硝基苯磷酸为底物时,该酶的米氏常数为3.3×10⁻⁴ M,最适pH为4.5。该酶受到无机磷酸盐(K(i)=10⁻⁴ M)和砷酸盐(K(i)=0.5×10⁻⁴ M)的竞争性抑制。多种无机阳离子和阴离子不影响酶活性,但Hg²⁺、Cd²⁺和Cu²⁺具有抑制作用。F⁻在低浓度时也具有抑制作用,但在高浓度时作用相反。将酶暴露于70℃ 12分钟可完全破坏磷酸酶活性,但通过蛋白水解作用破坏得较慢。在用接种完整白色念珠菌细胞的兔血清和患有确诊念珠菌病的人血清进行的免疫扩散和免疫电泳试验中,纯化的糖蛋白酶与白色念珠菌粗匀浆的“b”抗原呈现一条同一线。初步证据表明,酶分子的甘露聚糖部分而非蛋白质部分负责这种抗原性。