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影响黑曲霉提取物降解D-半乳糖醛酸的因素。

Factors affecting D-galactonate degradation by extracts of Aspergillus niger.

作者信息

Elshafei A M, Abdel-Fatah O M

机构信息

Department of Microbial Chemistry, National Research Centre, Dokki, Cairo, Egypt.

出版信息

J Basic Microbiol. 2001;41(3-4):149-58. doi: 10.1002/1521-4028(200107)41:3/4<149::aid-jobm149>3.0.co;2-t.

Abstract

Biochemical studies on the degradation of D-galactonate by cell-free extracts of Aspergillus niger indicated that the pH value and temperature optima were 8.0 and 7.5 and 40 degrees C and 50 degrees C for the two enzymes responsible for this degradation namely D-galactonate dehydratase and 2-keto-3-deoxy-D-galactonate (KDGal) aldolase respectively. The effects of the nature of the buffer substance, buffer molarity and enzyme concentration were also studied. Thermal stability behaviour studies show that D-galactonate dehydratase was stable at 40 degrees C for 60 minutes and about 41%, 80% and 90% of enzyme activity were lost by exposing the extracts to 50 degrees C, 60 degrees C and 70 degrees C, respectively, for the same period. However, exposing the extracts to 70 degrees C after 60 minutes caused a complete inhibition for KDGal aldolase activity and a gradual decrease in activity was noticed by incubation the extracts at 60 degrees C. The results of freezing and thawing treatment indicated that KDGal aldolase was more stable than D-galactonate dehydratase in this respect, as only 27% of enzyme activity was lost after 5 days of storage at -5 degrees C. Dialyzing the extracts significantly affects KDGal formation from D-galactonate. Results obtained also indicated the non-requirement of metal ions for activation of KDGal aldolase. On the other, hand D-galactonate dehydratase has a requirement for Mg++ and Mn++, however ZnSO4 and HgCl2 caused a complete inhibition of the enzymatic activity of this enzyme.

摘要

对黑曲霉无细胞提取物降解D - 半乳糖酸酯的生化研究表明,负责该降解过程的两种酶,即D - 半乳糖酸酯脱水酶和2 - 酮 - 3 - 脱氧 - D - 半乳糖酸酯(KDGal)醛缩酶,其最适pH值分别为8.0和7.5,最适温度分别为40℃和50℃。还研究了缓冲物质的性质、缓冲液摩尔浓度和酶浓度的影响。热稳定性行为研究表明,D - 半乳糖酸酯脱水酶在40℃下60分钟内稳定,将提取物分别在50℃、60℃和70℃下暴露相同时间后,约41%、80%和90%的酶活性丧失。然而,60分钟后将提取物暴露于70℃会导致KDGal醛缩酶活性完全抑制,将提取物在60℃下孵育会观察到活性逐渐降低。冻融处理结果表明,在这方面KDGal醛缩酶比D - 半乳糖酸酯脱水酶更稳定,因为在 - 5℃储存5天后仅损失27%的酶活性。对提取物进行透析会显著影响从D - 半乳糖酸酯形成KDGal。所得结果还表明激活KDGal醛缩酶不需要金属离子。另一方面,D - 半乳糖酸酯脱水酶需要Mg++和Mn++,然而ZnSO4和HgCl2会完全抑制该酶的酶活性。

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