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嗜热栖热放线菌内切葡聚糖酶V在1.5埃分辨率下的结构测定与精修

Structure determination and refinement of the Humicola insolens endoglucanase V at 1.5 A resolution.

作者信息

Davies G J, Dodson G, Moore M H, Tolley S P, Dauter Z, Wilson K S, Rasmussen G, Schülein M

机构信息

Department of Chemistry, University of York, Heslington, England.

出版信息

Acta Crystallogr D Biol Crystallogr. 1996 Jan 1;52(Pt 1):7-17. doi: 10.1107/S0907444995009280.

Abstract

The structure of the catalytic core of the endoglucanase V (EGV) from Humicola insolens has been determined by the method of multiple isomorphous replacement at 1.5 A resolution. The final model, refined with X-PLOR and PROLSQ, has a crystallographic R factor of 0.163 (R(free) = 0.240) with deviations from stereochemical target values of 0.012 A and 0.037 degrees for bonds and angles, respectively. The model was further refined with SHELXL, including anisotropic modelling of the protein-atom temperature factors, to give a final model with an R factor of 0.105 and an R(free) of 0.154. The initial isomorphous replacement electron-density map was poor and uninterpretable but was improved by the use of synchrotron data collected at a wavelength chosen so as to optimize the f" contribution of the anomalous scattering from the heavy atoms. The structure of H. insolens EGV consists of a six-stranded beta-barrel domain, similar to that found in a family of plant defence proteins, linked by a number of disulfide-bonded loop regions. A long open groove runs across the surface of the enzyme either side of which lie the catalytic aspartate residues. The 9 A separation of the catalytic carboxylate groups is consistent with the observation that EGV catalyzes the hydrolysis of the cellulose, beta(1-->4) links with inversion of configuration at the anomeric C1 atom. This structure is the first representative from the glycosyl hydrolase family 45.

摘要

采用多对同晶置换法在1.5埃分辨率下测定了特异腐质霉内切葡聚糖酶V(EGV)催化核心的结构。用X-PLOR和PROLSQ程序对最终模型进行精修,得到的晶体学R因子为0.163(R(自由)=0.240),键长和键角与立体化学目标值的偏差分别为0.012埃和0.037度。用SHELXL程序对该模型进一步精修,包括对蛋白质原子温度因子进行各向异性建模,得到最终模型的R因子为0.105,R(自由)为0.154。最初的同晶置换电子密度图质量差且无法解读,但通过使用在特定波长下收集的同步辐射数据得到了改善,该波长的选择是为了优化重原子反常散射的f″贡献。特异腐质霉EGV的结构由一个六链β桶结构域组成,类似于在一类植物防御蛋白中发现的结构域,通过多个二硫键连接的环区相连。一条长的开放凹槽贯穿酶的表面,催化天冬氨酸残基位于凹槽两侧。催化羧基之间9埃的间距与EGV催化纤维素β(1→4)糖苷键水解且在异头C1原子处构型翻转的观察结果一致。该结构是糖基水解酶家族45的首个代表性结构。

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