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来自黄孢原毛平革菌的吡喃糖2-氧化酶——进一步的生化特性研究

Pyranose 2-oxidase from Phanerochaete chrysosporium--further biochemical characterisation.

作者信息

Artolozaga M J, Kubátová E, Volc J, Kalisz H M

机构信息

GBF-Gesellschaft für Biotechnologische Forschung, Braunschweig, Germany.

出版信息

Appl Microbiol Biotechnol. 1997 May;47(5):508-14. doi: 10.1007/s002530050964.

Abstract

Pyranose 2-oxidase (P2O) was purified 43-fold to apparent homogeneity from the basidiomycete Phanerochaete chrysosporium using liquid chromatography on phenyl Sepharose, Mono Q (twice) and phenyl Superose. The native enzyme has a molecular mass of about 250 kDa (based on native PAGE) and is composed of four identical subunits of 65 kDa. It contains three isoforms of isoelectric point (pI) 5.0, 5.05 and 5.15 and does not appear to be a glycoprotein. P2O is optimally stable at pH 8.0 and up to 60 degrees C. It is active over a broad pH range (5.0-9.0) with maximum activity at pH 8.0-8.5 and at 55 degrees C, and a broad substrate specificity. D-Glucose is the preferred substrate, but 1-beta-aurothioglucose, 6-deoxy-D-glucose, L-sorbose, D-xylose, 5-thioglucose, D-glucono-1,5-lactone, maltose and 2-deoxy-D-glucose are also oxidised at relatively high rates. A Ping Pong Bi Bi mechanism was demonstrated for the P2O reaction at pH 8.0, with a catalytic constant (kcat) of 111.0 s-1 and an affinity constant (Km) of 1.43 mM for D-glucose and 83.2 microM for oxygen. Whereas the steady-state kinetics for glucose oxidation were unaffected by the medium at pH > or = 7.0, at low pH both pH and buffer composition affected the P2O kinetics with the kcat/K(m) value decreasing with decreasing pH. The greatest effect was observed in acetate buffer (0.1 M, pH 4.5), where the kcat decreased to 60.9 s-1 and the K(m) increased to 240 mM. The activity of P2O was completely inhibited by 10 mM HgCl2, AgNO3 and ZnCl2, and 50% by lead acetate, CuCl2 and MnCl2.

摘要

利用苯基琼脂糖凝胶、Mono Q(两次)和苯基超级琼脂糖凝胶进行液相色谱,从担子菌黄孢原毛平革菌中纯化出吡喃糖2 -氧化酶(P2O),纯化倍数达43倍,达到表观均一性。天然酶的分子量约为250 kDa(基于非变性聚丙烯酰胺凝胶电泳),由四个65 kDa的相同亚基组成。它含有等电点(pI)为5.0、5.05和5.15的三种同工型,似乎不是糖蛋白。P2O在pH 8.0和高达60℃时最稳定。它在较宽的pH范围(5.0 - 9.0)内有活性,在pH 8.0 - 8.5和55℃时活性最高,且底物特异性较宽。D -葡萄糖是首选底物,但1 -β -金硫葡萄糖、6 -脱氧 - D -葡萄糖、L -山梨糖、D -木糖、5 -硫葡萄糖、D -葡萄糖酸 - 1,5 -内酯、麦芽糖和2 -脱氧 - D -葡萄糖也能以相对较高的速率被氧化。在pH 8.0时,证明P2O反应符合乒乓双底物双产物机制,催化常数(kcat)为111.0 s-1,对D -葡萄糖的亲和常数(Km)为1.43 mM,对氧气的亲和常数为83.2 μM。在pH≥7.0时,葡萄糖氧化的稳态动力学不受介质影响,但在低pH时,pH和缓冲液组成都会影响P2O动力学,kcat/Km值随pH降低而降低。在乙酸盐缓冲液(0.1 M,pH 4.5)中观察到的影响最大,此时kcat降至60.9 s-1,Km增至240 mM。10 mM HgCl2、AgNO3和ZnCl2可完全抑制P2O的活性,醋酸铅、CuCl2和MnCl2可抑制50%。

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