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首页> 外文期刊>Protein and peptide letters >Characterization of a Thermostable Uricase Isolated from Bacillus firmus DWD-33 and its Application for Uric Acid Quantification in Human Serum
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Characterization of a Thermostable Uricase Isolated from Bacillus firmus DWD-33 and its Application for Uric Acid Quantification in Human Serum

机译:从枯草芽孢杆菌DWD-33分离的热稳定尿酸酶的表征及其在人血清中尿酸定量的应用

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A thermostable uricase identified in Bacillus firmus DWD-33, which was isolated for the first time from soil, with an apparent molecular weight of 33.5 kDa was stable against oxidants and SDS. The highest expression yields were obtained in medium containing 0.8% maltose and 1.2% soybean powder as carbon and nitrogen sources, respectively. Enzyme purification increased the specific activity about 24-fold with 27% recovery. As compared with other microbial uricases, the pure enzyme showed a high thermostability. The V-max was 387 mu mol/L/min, the turnover number (K-cat) was 21.8 x 10(3) s(-1) and the catalytic efficiency (K-cat/K-m) was 2.76 x 10(8) s(-1) M-1. The enzyme was stable from pH 7.0 to 10.0 and up to 70 degrees C and the optimal conditions were 50 degrees C and pH 8.0. Mg2+ significantly enhanced the enzymatic activity, while Hg2+, EDTA, and o-phenanthroline greatly suppressed the activity. Mg2+ might be the uricase cofactor, as the enzyme activity was restored after its addition to EDTA-chelated enzyme. Inhibition of the enzyme by the copper- chelating agent 2,9-dimethyl-1,10-phenanthroline suggests that this enzyme belongs to the cuprouricase-type. The purified uricase retained 72% and 82% of its original activity after incubation with 0.5% H2O2 and 0.5% SDS for 6 h, respectively. It was possible to determine uric acid in human sera with the enzyme with none of the tested uric acid analogs being a competitive substrate, indicating a high specificity of uricase with respect to uric acid measurement in vitro for uric acid concentration up to 500 mu mol/L.
机译:在首次从土壤中分离出的牢固芽孢杆菌DWD-33中鉴定出的热稳定尿酸酶,表观分子量为33.5 kDa,对氧化剂和SDS稳定。在分别包含0.8%麦芽糖和1.2%大豆粉作为碳源和氮源的培养基中获得了最高的表达产量。酶纯化将比活性提高了约24倍,回收率达27%。与其他微生物尿酸酶相比,纯酶表现出很高的热稳定性。 V-max为387μmol / L / min,周转数(K-cat)为21.8 x 10(3)s(-1),催化效率(K-cat / Km)为2.76 x 10(8) )s(-1)M-1。该酶在pH 7.0到10.0以及最高70摄氏度的温度下都稳定,最佳条件是50摄氏度和pH 8.0。 Mg2 +显着增强了酶活性,而Hg2 +,EDTA和邻菲咯啉则大大抑制了酶活性。 Mg2 +可能是尿酸酶的辅助因子,因为将其添加到EDTA螯合的酶中后酶活性得以恢复。铜螯合剂2,9-二甲基-1,10-菲咯啉对酶的抑制作用表明该酶属于铜尿酸酶类型。纯化的尿酸酶分别与0.5%H2O2和0.5%SDS孵育6小时后,保留其原始活性的72%和82%。可以用该酶测定人血清中的尿酸,而没有一种被测试的尿酸类似物是竞争底物,这表明尿酸酶对于体外尿酸测量具有很高的特异性,最高尿酸浓度为500μmol / L.

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