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Prediction of the three-dimensional structure of serine/threonine protein kinase pto of Solanum lycopersicum by homology modelling

机译:同源建模预测茄果茄丝氨酸/苏氨酸蛋白激酶pto的三维结构

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摘要

The resistant gene Pto of Solanum lycopersicum interacts with the avr Pto gene product of the bacterial pathogen Pseudomonas syringae pv tomato to launch a cascade of molecular events that triggers the hypersensitive disease-resistance response in tamato. The paper describes attempts to predict the structure of Pto encoding a serine/threonine protein kinase to understand the mechanism and function. A three-dimensional model based on the crystal structure of effect protein Avr ptob complexed with Kinase Pto and bacterial effector protein Avrpto was generated using Modeller9v7. We adopted different modelling approaches for our study, Intialy, we generated a model based on a single template protein and then a model based on multiple templates. The models generated through these approaches were further assessed with ANOLEA energy assessment, Ram Page server and PROCHECK for stereochemistry and geometry check. Comparative analysis suggested that the model generated was better than the templates. This study paves the way for generating computer molecular models for proteins whose crystal structures are not available and which would aid in studying protein-protein interactions.
机译:番茄的抗性基因Pto与细菌病原体丁香假单胞菌pv番茄的avr Pto基因产物相互作用,引发一系列分子事件,从而触发tamato中的超敏疾病抗性反应。本文描述了预测Pto编码丝氨酸/苏氨酸蛋白激酶的结构以了解其机理和功能的尝试。使用Modeller9v7,基于与激酶Pto和细菌效应蛋白Avrpto复合的效应蛋白Avr ptob的晶体结构,建立了三维模型。我们在Intialy研究中采用了不同的建模方法,我们基于单个模板蛋白生成了一个模型,然后基于多个模板生成了一个模型。通过这些方法生成的模型进一步通过ANOLEA能量评估,Ram Page服务器和PROCHECK进行了立体化学和几何检查的评估。对比分析表明,生成的模型优于模板。这项研究为生成其晶体结构不可用的蛋白质的计算机分子模型铺平了道路,这将有助于研究蛋白质与蛋白质的相互作用。

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