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糖基水解酶32家族的结构模型。

Structural model for family 32 of glycosyl-hydrolase enzymes.

作者信息

Pons T, Olmea O, Chinea G, Beldarraín A, Márquez G, Acosta N, Rodríguez L, Valencia A

机构信息

Centro de Ingeniería Genética y Biotecnología, Havana, Cuba.

出版信息

Proteins. 1998 Nov 15;33(3):383-95. doi: 10.1002/(sici)1097-0134(19981115)33:3<383::aid-prot7>3.0.co;2-r.

Abstract

A structural model is presented for family 32 of the glycosyl-hydrolase enzymes based on the beta-propeller fold. The model is derived from the common prediction of two different threading methods, TOPITS and THREADER. In addition, we used a correlated mutation analysis and prediction of active-site residues to corroborate the proposed model. Physical techniques (circular dichroism and differential scanning calorimetry) confirmed two aspects of the prediction, the proposed all-beta fold and the multi-domain structure. The most reliable three-dimensional model was obtained using the structure of neuraminidase (1nscA) as template. The analysis of the position of the active site residues in this model is compatible with the catalytic mechanism proposed by Reddy and Maley (J. Biol. Chem. 271:13953-13958, 1996), which includes three conserved residues, Asp, Glu, and Cys. Based on this analysis, we propose the participation of one more conserved residue (Asp 162) in the catalytic mechanism. The model will facilitate further studies of the physical and biochemical characteristics of family 32 of the glycosyl-hydrolases.

摘要

基于β-螺旋桨折叠结构,提出了糖基水解酶32家族的结构模型。该模型源自两种不同穿线方法TOPITS和THREADER的共同预测。此外,我们使用了相关突变分析和活性位点残基预测来证实所提出的模型。物理技术(圆二色性和差示扫描量热法)证实了预测的两个方面,即所提出的全β折叠和多结构域结构。以神经氨酸酶(1nscA)的结构为模板获得了最可靠的三维模型。对该模型中活性位点残基位置的分析与Reddy和Maley(《生物化学杂志》271:13953 - 13958,1996)提出的催化机制相符,该机制包括三个保守残基,天冬氨酸、谷氨酸和半胱氨酸。基于此分析,我们提出另一个保守残基(天冬氨酸162)参与催化机制。该模型将有助于对糖基水解酶32家族的物理和生化特性进行进一步研究。

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