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首页> 外文期刊>Computational and Structural Biotechnology Journal >{CONFORMATIONAL} {SAMPLING} {IN} TEMPLATE-FREE {PROTEIN} {LOOP} {STRUCTURE} MODELING: {AN} {OVERVIEW}
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{CONFORMATIONAL} {SAMPLING} {IN} TEMPLATE-FREE {PROTEIN} {LOOP} {STRUCTURE} MODELING: {AN} {OVERVIEW}

机译:{CONFORMATIONAL} {SAMPLING} {IN}无模板的{PROTEIN} {LOOP} {STRUCTURE}建模:{AN} {概述}

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Accurately modeling protein loops is an important step to predict three-dimensional structures as well as to understand functions of many proteins. Because of their high flexibility, modeling the three-dimensional structures of loops is difficult and is usually treated as a “mini protein folding problem” under geometric constraints. In the past decade, there has been remarkable progress in template-free loop structure modeling due to advances of computational methods as well as stably increasing number of known structures available in PDB. This mini review provides an overview on the recent computational approaches for loop structure modeling. In particular, we focus on the approaches of sampling loop conformation space, which is a critical step to obtain high resolution models in template-free methods. We review the potential energy functions for loop modeling, loop buildup mechanisms to satisfy geometric constraints, and loop conformation sampling algorithms. The recent loop modeling results are also summarized.
机译:准确建模蛋白质环是预测三维结构以及了解许多蛋白质功能的重要步骤。由于它们的高度灵活性,因此很难对环的三维结构进行建模,通常在几何约束下将其视为“微型蛋白质折叠问题”。在过去的十年中,由于计算方法的进步以及PDB中可用的已知结构数量的稳定增长,无模板循环结构建模取得了显着进展。这份小型回顾为环路结构建模的最新计算方法提供了概述。特别是,我们专注于采样循环构象空间的方法,这是在无模板方法中获取高分辨率模型的关键步骤。我们回顾了用于循环建模,满足几何约束的循环建立机制以及循环构象采样算法的势能函数。还总结了最近的循环建模结果。

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