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嗜热栖热放线菌内切葡聚糖酶Cel6A与底物和抑制剂复合物的晶体结构:酪氨酸Y73在底物环扭曲中的作用

Crystal structure of Thermobifida fusca endoglucanase Cel6A in complex with substrate and inhibitor: the role of tyrosine Y73 in substrate ring distortion.

作者信息

Larsson Anna M, Bergfors Terese, Dultz Elisa, Irwin Diana C, Roos Annette, Driguez Hugues, Wilson David B, Jones T Alwyn

机构信息

Department of Cell and Molecular Biology, University of Uppsala, Biomedical Centre, Box 596, SE-751 24 Uppsala, Sweden.

出版信息

Biochemistry. 2005 Oct 4;44(39):12915-22. doi: 10.1021/bi0506730.

Abstract

Endoglucanase Cel6A from Thermobifida fusca hydrolyzes the beta-1,4 linkages in cellulose at accessible points along the polymer. The structure of the catalytic domain of Cel6A from T. fusca in complex with a nonhydrolysable substrate analogue that acts as an inhibitor, methylcellobiosyl-4-thio-beta-cellobioside (Glc(2)-S-Glc(2)), has been determined to 1.5 A resolution. The glycosyl unit in subsite -1 was sterically hindered by Tyr73 and forced into a distorted (2)S(o) conformation. In the enzyme where Tyr73 was mutated to a serine residue, the hindrance was removed and the glycosyl unit in subsite -1 had a relaxed (4)C(1) chair conformation. The relaxed conformation was seen in two complex structures of the mutated enzyme, with cellotetrose (Glc(4)) at 1.64 A and Glc(2)-S-Glc(2) at 1.04 A resolution.

摘要

来自栖热放线菌的内切葡聚糖酶Cel6A在聚合物上可及位点水解纤维素中的β-1,4连接。已确定来自栖热放线菌的Cel6A催化结构域与一种作为抑制剂的不可水解底物类似物甲基纤维二糖基-4-硫代-β-纤维二糖(Glc(2)-S-Glc(2))形成复合物的结构,分辨率为1.5埃。亚位点-1中的糖基单元受到Tyr73的空间位阻,被迫进入扭曲的(2)S(o)构象。在Tyr73突变为丝氨酸残基的酶中,位阻被消除,亚位点-1中的糖基单元具有松弛的(4)C(1)椅式构象。在突变酶的两个复合物结构中观察到了这种松弛构象,与纤维四糖(Glc(4))形成复合物时分辨率为1.64埃,与Glc(2)-S-Glc(2)形成复合物时分辨率为1.04埃。

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