新型嗜热细菌gonoxybacillus A4的热稳定酯水解活性测定与表征。

Ozlem Faiz, Ahmet Colak, Nagihan Saglam, Sabriye Canakçi, Ali Osman Beldüz
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引用次数: 43

摘要

研究了一种新型温泉嗜热菌gonensis A4 (a.g onoxybacillus gonensis A4)对三丁酸甘油酯的降解能力,并通过对硝基苯丁酸酯(PNPB)的水解对其耐热酯酶活性进行了表征。结果表明,gonensis A4具有分子量为62 kDa的酯酶。从底物特异性、最适pH和温度、稳定性、动力学参数以及对某些化学物质和金属离子的抑制/活化行为等方面对细胞外粗制物进行了表征。甘油三酯琼脂实验表明,在PNPB底物存在下,gonensis A4分泌酯酶,其活性V(max)和K(m)值分别为800 U/L和176.5 microM。gonensis A4酯酶的最适温度为60 ~ 80℃,最适pH为5.5。粗提液在30 ~ 70℃条件下孵育1 h,酶活性无明显变化,但在80℃条件下孵育1 h,酶活性完全丧失。pH稳定性谱显示,在pH 6.0时,原始粗酯酶活性增加了近2倍。一些化学物质对粗酯酶活性的影响表明,gonensis A4产生一种在活性位点有丝氨酸残基的酯酶,而-SH组是其活性所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination and characterization of thermostable esterolytic activity from a novel thermophilic bacterium Anoxybacillus gonensis A4.

A novel hot spring thermophile, Anoxybacillus gonensis A4 (A. gonensis A4) was investigated in terms of capability of tributyrin degradation and characterization of its thermostable esterase activity by the hydrolysis of p-nitrophenyl butyrate (PNPB). It was observed that A. gonensis A4 has an esterase with a molecular weight of 62 kDa. The extracellular crude preparation was characterized in terms of substrate specificity, pH and temperature optima and stability, kinetic parameters and inhibition/activation behaviour towards some chemicals and metal ions. Tributyrin agar assay showed that A. gonensis A4 secreted an esterase and V(max) and K(m) values of its activity were found to be 800 U/L and 176.5 microM, respectively in the presence of PNPB substrate. The optimum temperature and pH, for A. gonensis A4 esterase was 60-80 degrees C and 5.5, respectively. Although the enzyme activity was not significantly changed by incubating crude extract solution at 30-70 degrees C for 1 h, the enzyme activity was fully lost at 80 degrees C for same incubation period. The pH-stability profile showed that original crude esterase activity increased nearly 2-fold at pH 6.0. The effect of some chemicals on crude esterase activity indicated that A. gonensis A4 produce an esterase having serine residue in active site and -SH groups were essential for its activity.

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