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里氏木霉纤维二糖水解酶Cel7A外显环的工程改造。与黄孢原毛平革菌Cel7D的比较。

Engineering the exo-loop of Trichoderma reesei cellobiohydrolase, Cel7A. A comparison with Phanerochaete chrysosporium Cel7D.

作者信息

von Ossowski Ingemar, Ståhlberg Jerry, Koivula Anu, Piens Kathleen, Becker Dieter, Boer Harry, Harle Raija, Harris Mark, Divne Christina, Mahdi Sabah, Zhao Yongxin, Driguez Hugues, Claeyssens Marc, Sinnott Michael L, Teeri Tuula T

机构信息

VTT Biotechnology, PO Box 1500, FIN-02044 VTT, Espoo, Finland.

出版信息

J Mol Biol. 2003 Oct 31;333(4):817-29. doi: 10.1016/s0022-2836(03)00881-7.

Abstract

The exo-loop of Trichoderma reesei cellobiohydrolase Cel7A forms the roof of the active site tunnel at the catalytic centre. Mutants were designed to study the role of this loop in crystalline cellulose degradation. A hydrogen bond to substrate made by a tyrosine at the tip of the loop was removed by the Y247F mutation. The mobility of the loop was reduced by introducing a new disulphide bridge in the mutant D241C/D249C. The tip of the loop was deleted in mutant Delta(G245-Y252). No major structural disturbances were observed in the mutant enzymes, nor was the thermostability of the enzyme affected by the mutations. The Y247F mutation caused a slight k(cat) reduction on 4-nitrophenyl lactoside, but only a small effect on cellulose hydrolysis. Deletion of the tip of the loop increased both k(cat) and K(M) and gave reduced product inhibition. Increased activity was observed on amorphous cellulose, while only half the original activity remained on crystalline cellulose. Stabilisation of the exo-loop by the disulphide bridge enhanced the activity on both amorphous and crystalline cellulose. The ratio Glc(2)/(Glc(3)+Glc(1)) released from cellulose, which is indicative of processive action, was highest with Tr Cel7A wild-type enzyme and smallest with the deletion mutant on both substrates. Based on these data it seems that the exo-loop of Tr Cel7A has evolved to facilitate processive crystalline cellulose degradation, which does not require significant conformational changes of this loop.

摘要

里氏木霉纤维二糖水解酶Cel7A的外显环在催化中心形成了活性位点通道的顶部。设计突变体以研究该环在结晶纤维素降解中的作用。通过Y247F突变去除了环末端酪氨酸与底物形成的氢键。在突变体D241C/D249C中引入新的二硫键降低了环的流动性。在突变体Delta(G245 - Y252)中删除了环的末端。在突变酶中未观察到主要的结构紊乱,并且这些突变也未影响酶的热稳定性。Y247F突变导致对4-硝基苯基乳糖苷的k(cat)略有降低,但对纤维素水解只有很小的影响。删除环的末端增加了k(cat)和K(M),并减少了产物抑制。在无定形纤维素上观察到活性增加,而在结晶纤维素上仅保留了原始活性的一半。通过二硫键稳定外显环增强了对无定形和结晶纤维素的活性。从纤维素释放的Glc(2)/(Glc(3)+Glc(1))的比率,这表明进行性作用,在两种底物上,Tr Cel7A野生型酶最高,缺失突变体最小。基于这些数据,似乎Tr Cel7A的外显环已经进化以促进进行性结晶纤维素降解,这不需要该环有显著的构象变化。

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