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Protein flexibility in the light of structural alphabets

机译:根据结构字母的蛋白质灵活性

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摘要

Protein structures are valuable tools to understand protein function. Nonetheless, proteins are often considered as rigid macromolecules while their structures exhibit specific flexibility, which is essential to complete their functions. Analyses of protein structures and dynamics are often performed with a simplified three-state description, i.e., the classical secondary structures. More precise and complete description of protein backbone conformation can be obtained using libraries of small protein fragments that are able to approximate every part of protein structures. These libraries, called structural alphabets (SAs), have been widely used in structure analysis field, from definition of ligand binding sites to superimposition of protein structures. SAs are also well suited to analyze the dynamics of protein structures. Here, we review innovative approaches that investigate protein flexibility based on SAs description. Coupled to various sources of experimental data (e.g., B-factor) and computational methodology (e.g., Molecular Dynamic simulation), SAs turn out to be powerful tools to analyze protein dynamics, e.g., to examine allosteric mechanisms in large set of structures in complexes, to identify order/disorder transition. SAs were also shown to be quite efficient to predict protein flexibility from amino-acid sequence. Finally, in this review, we exemplify the interest of SAs for studying flexibility with different cases of proteins implicated in pathologies and diseases.
机译:蛋白质结构是了解蛋白质功能的宝贵工具。尽管如此,蛋白质通常被认为是刚性的大分子,而其结构却具有特定的柔韧性,这对于完成其功能至关重要。蛋白质结构和动力学的分析通常以简化的三态描述进行,即经典的二级结构。可以使用能够近似蛋白质结构各个部分的小蛋白质片段文库获得对蛋白质骨架构象的更精确和完整的描述。这些库,称为结构字母(SA),已从定义配体结合位点到蛋白质结构的叠加,广泛用于结构分析领域。 SA还非常适合分析蛋白质结构的动力学。在这里,我们回顾了基于SA描述描述蛋白质灵活性的创新方法。结合各种实验数据(例如B因子)和计算方法(例如分子动力学模拟)的来源,SA成为分析蛋白质动力学的强大工具,例如检查复合物中大型结构的变构机制。 ,以识别订单/无序转移。还显示SAs从氨基酸序列预测蛋白质的柔韧性非常有效。最后,在这篇综述中,我们举例说明了SAs对研究与病理和疾病有关的不同蛋白质案例的灵活性的兴趣。

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