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来自福寿螺的多功能纤维素酶EGX的pH依赖性稳定性。

pH-dependent stability of EGX, a multi-functional cellulase from mollusca, Ampullaria crossean.

作者信息

Li Wen-Ying, Wang Ji, Li Yan-Hong, Ding Ming, Xu Gen-Jun, Liu Lan-Ying, Zhao Fu-Kun

机构信息

Key Laboratory of Proteomics, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, the Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai 200031, China.

出版信息

Acta Biochim Biophys Sin (Shanghai). 2004 Sep;36(9):603-8. doi: 10.1093/abbs/36.9.603.

Abstract

The cellulase activity and stability of EGX, a multi-functional cellulase previously purified from the mollusca Ampullaria crossean, was systematically studied under different pH. The pH induced con-formation and stability change of EGX have been investigated by using the intrinsic fluorescence, ANS fluorescence and CD spectrum. It has been found that the conformation and activity of this cellulase were strongly dependent on the pH. EGX was stable for both the enzyme activity and the conformation from pH 5.6 to pH 7.4. As shown by intrinsic and ANS fluorescence, no red shift of emission maximum occurred and a negligible intensity change was observed at pH 5.6-7.4. The activity of EGX remained about 80% in pH 5.6-7.4 and obviously decreased out of side the pH range. Urea-induced changes in EGX at pH 5.4 and pH 8.0 were measured by intrinsic fluorescence and CD spectrum. At pH 5.4, a significantly red shift of emission maximum occurred when the concentration of urea was 5 M compared to the concentration was 3 M at pH 8.0. The alpha-helix at pH 5.4 was 40.51% in the absence of urea and 31.04% in the presence of 4 M urea. At pH 8.0 the alpha-helix was 7.23% in the presence of 4 M urea. The data indicated that EGX was much susceptible to urea-induced unfolding at pH 8.0 and much stable at pH 5.4. The greater pH dependent stability of EGX may allow the enzyme to adequately catalyze the hydrolysis of cellulosic materials under natural or industrial extreme conditions.

摘要

对先前从福寿螺中纯化得到的多功能纤维素酶EGX,在不同pH值条件下,系统研究了其纤维素酶活性和稳定性。利用内源荧光、ANS荧光和圆二色光谱研究了pH诱导的EGX构象和稳定性变化。发现该纤维素酶的构象和活性强烈依赖于pH值。EGX在pH 5.6至pH 7.4范围内,酶活性和构象均保持稳定。内源荧光和ANS荧光结果表明,在pH 5.6 - 7.4范围内,发射峰最大值无红移,强度变化可忽略不计。在pH 5.6 - 7.4范围内,EGX的活性保持在约80%,超出该pH范围则明显下降。通过内源荧光和圆二色光谱测定了pH 5.4和pH 8.0条件下尿素诱导的EGX变化。在pH 5.4时,当尿素浓度为5 M时,发射峰最大值出现明显红移,而在pH 8.0时,尿素浓度为3 M时出现红移。在无尿素存在时,pH 5.4条件下的α-螺旋含量为40.51%,在4 M尿素存在时为31.04%。在pH 8.0时,4 M尿素存在下α-螺旋含量为7.23%。数据表明,EGX在pH 8.0时对尿素诱导的去折叠更敏感,在pH 5.4时更稳定。EGX对pH依赖性更强的稳定性可能使该酶在自然或工业极端条件下能够充分催化纤维素材料的水解。

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