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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Refinement of unreliable local regions in template-based protein models
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Refinement of unreliable local regions in template-based protein models

机译:在基于模板的蛋白质模型中细化不可靠的局部区域

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摘要

Contemporary template-based modeling techniques allow applications of modeling methods to vast biological problems. However, they tend to fail to provide accurate structures for less-conserved local regions in sequence even when the overall structure can be modeled reliably. We call these regions unreliable local regions (ULRs). Accurate modeling of ULRs is of enormous value because they are frequently involved in functional specificity. In this article, we introduce a new method for modeling ULRs in template-based models by employing a sophisticated loop modeling technique. Combined with our previous study on protein termini, the method is applicable to refinement of both loop and terminus ULRs. A large-scale test carried out in a blind fashion in CASP9 (the 9th Critical Assessment of techniques for protein structure prediction) shows that ULR structures are improved over initial template-based models by refinement in more than 70% of the successfully detected ULRs. It is also notable that successful modeling of several long ULRs over 12 residues is achieved. Overall, the current results show that a careful application of loop and terminus modeling can be a promising tool for model refinement in template-based modeling.
机译:基于当代模板的建模技术允许将建模方法应用于大量的生物学问题。但是,即使可以对整体结构进行可靠建模,它们也往往无法为保守程度较低的局部区域提供准确的结构。我们称这些区域为不可靠的本地区域(ULR)。 ULR的准确建模具有巨大的价值,因为它们经常涉及功能特异性。在本文中,我们介绍了一种通过使用复杂的循环建模技术在基于模板的模型中对ULR建模的新方法。结合我们先前对蛋白质末端的研究,该方法适用于环和末端ULR的优化。在CASP9(蛋白质结构预测技术的第9次关键评估)中以盲目方式进行的大规模测试表明,通过对超过70%的成功检测到的ULR进行细化,与基于初始模板的模型相比,ULR结构得到了改善。还值得注意的是,已经成功建立了超过12个残基的多个长ULR的建模。总的来说,当前的结果表明,仔细地应用循环和终点建模可以成为在基于模板的建模中完善模型的有前途的工具。

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