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苏云金芽孢杆菌几丁质结合蛋白CBP24的三维(3D)结构预测及底物-蛋白质相互作用研究

Three dimensional (3D) structure prediction and substrate-protein interaction study of the chitin binding protein CBP24 from B. thuringiensis.

作者信息

Sehar Ujala, Mehmood Muhammad Aamer, Nawaz Salman, Nadeem Shahid, Hussain Khadim, Sohail Iqra, Tabassum Muhammad Rizwan, Gill Saba Shahid, Saqib Anam

机构信息

Department of Bioinformatics and Biotechnology, Faculty of Science & Technology, Government College University, Faisalabad, Pakistan.

出版信息

Bioinformation. 2013 Aug 7;9(14):725-9. doi: 10.6026/97320630009725. eCollection 2013.

Abstract

Bacillus thuringiensis is an insecticidal bacterium whose chitinolytic system has been exploited to improve insect resistance in crops. In the present study, we studied the CBP24 from B. thuringiensis using homology modeling and molecular docking. The primary and secondary structure analyses showed CBP24 is a positively charged protein and contains single domain that belongs to family CBM33. The 3D model after refinement was used to explore the chitin binding characteristics of CBP24 using AUTODOCK. The docking analyses have shown that the surface exposed hydrophilic amino acid residues Thr-103, Lys-112 and Ser-162 interact with substrate through H-bonding. While, the amino acids resides Glu-39, Tyr-46, Ser-104 and Asn-109 were shown to have polar interactions with the substrate. The binding energy values evaluation of docking depicts a stable intermolecular conformation of the docked complex. The functional characterization of the CBP24 will elucidate the substrate-interaction pathway of the protein in specific and the carbohydrate binding proteins in general leading towards the exploration and exploitation of the prokaryotic substrate utilization pathways.

摘要

苏云金芽孢杆菌是一种杀虫细菌,其几丁质分解系统已被用于提高作物的抗虫性。在本研究中,我们使用同源建模和分子对接方法对苏云金芽孢杆菌的CBP24进行了研究。一级和二级结构分析表明,CBP24是一种带正电荷的蛋白质,包含一个属于CBM33家族的单结构域。优化后的三维模型用于通过AUTODOCK探索CBP24的几丁质结合特性。对接分析表明,表面暴露的亲水性氨基酸残基Thr-103、Lys-112和Ser-162通过氢键与底物相互作用。同时,氨基酸残基Glu-39、Tyr-46、Ser-104和Asn-109显示与底物有极性相互作用。对接的结合能值评估描绘了对接复合物稳定的分子间构象。CBP24的功能表征将阐明该蛋白质在特定情况下以及一般碳水化合物结合蛋白的底物相互作用途径,从而有助于探索和利用原核生物的底物利用途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc4c/3746096/2da94f96bbcf/97320630009725F1.jpg

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