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HYCUD: a computational tool for prediction of effective rotational correlation time in flexible proteins

机译:HYCUD:预测柔性蛋白质中有效旋转相关时间的计算工具

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Motivation: A large fraction of eukaryotic proteins contain unstructured tails or linkers. The presence of flexible regions allows these systems to experience a high level of mobility facilitating their biological function. The complex nature of protein rotation in such flexible modular systems precludes a straightforward application of hydrodynamic methods to calculate their rotational motional properties. We describe the workflow of HYdrodynamic CoUpling of Domains (HYCUD), a program for prediction of effective rotational correlation times in multidomain proteins. The usage of HYCUD is demonstrated by its application to the ribosomal protein L7/L12. Rotational correlation times predicted by HYCUD might be used to detect molecular switch events mediated by disorder-order transitions in interdomain linkers.
机译:动机:很大一部分真核蛋白质都包含无结构的尾巴或接头。柔性区域的存在使这些系统能够经历高水平的移动性,从而促进其生物学功能。在这种灵活的模块化系统中,蛋白质旋转的复杂性使水力学方法无法直接应用来计算其旋转运动特性。我们描述了域的水力耦合(HYCUD)的工作流程,该程序用于预测多域蛋白中有效的旋转相关时间。 HYCUD在核糖体蛋白L7 / L12中的应用证明了其用途。 HYCUD预测的旋转相关时间可用于检测域间连接子中由无序转换所介导的分子开关事件。

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