Comparative evaluation of commercially available homology modelling tools: A structural bioinformatics perspective

Sween Dahiya , Anjum Gahlaut , Mahesh Kulharia
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引用次数: 2

Abstract

Background

Structure based drug design has revolutionised the way new drug molecules are being looked for. A very important technique in this process is homology modelling of protein structures. Although a number of protocols are proposed by a number of research groups, yet a comparative assessment is desired to identify the relative merits and demerits of these programs. Comparative assessment of various homology modelling tools was evaluated using prediction of structure of B-domain of factor V.

Methods

The methods employed, here, for comparative assessment were ESyPred3D, SWISS MODEL, PHYRE2 and YASARA. The criteria for selection of these tools were their popularity among users and level of automation. All these are completely automated and require only protein sequence or alignments as input. These tools were fast and the results were obtained within few hours.

Results

To evaluate the various models of the protein structures, we carried out exhaustive evaluation through “WHATif” and “QMEAN”. The parameters included the bond angle, bond length, coarse packing quality control, collision symmetry, omega angle, hand check dihedrals etc.

Conclusion

According to our study YASARA emerged as best performer.

商业上可用的同源建模工具的比较评价:结构生物信息学的观点
基于结构的药物设计已经彻底改变了寻找新药物分子的方式。在这一过程中一个非常重要的技术是蛋白质结构的同源性建模。虽然许多研究小组提出了许多方案,但需要进行比较评估,以确定这些方案的相对优点和缺点。采用因子v的b域结构预测方法对不同的同源性建模工具进行比较评价。方法采用ESyPred3D、SWISS MODEL、PHYRE2和YASARA进行比较评价。选择这些工具的标准是它们在用户中的受欢迎程度和自动化程度。所有这些都是完全自动化的,只需要蛋白质序列或比对作为输入。这些工具速度快,在几个小时内就能得到结果。结果我们通过“WHATif”和“QMEAN”对各种蛋白质结构模型进行了详尽的评价。参数包括键合角、键合长度、粗填料质量控制、碰撞对称、欧米伽角、手检二面体等。结论根据我们的研究,YASARA表现最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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