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Three dimensional shape comparison of flexible proteins using the local-diameter descriptor

机译:使用局部直径描述符对柔性蛋白质进行三维形状比较

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Background Techniques for inferring the functions of the protein by comparing their shape similarity have been receiving a lot of attention. Proteins are functional units and their shape flexibility occupies an essential role in various biological processes. Several shape descriptors have demonstrated the capability of protein shape comparison by treating them as rigid bodies. But this may give rise to an incorrect comparison of flexible protein shapes. Results We introduce an efficient approach for comparing flexible protein shapes by adapting a local diameter (LD) descriptor. The LD descriptor, developed recently to handle skeleton based shape deformations [ 1 ], is adapted in this work to capture the invariant properties of shape deformations caused by the motion of the protein backbone. Every sampled point on the protein surface is assigned a value measuring the diameter of the 3D shape in the neighborhood of that point. The LD descriptor is built in the form of a one dimensional histogram from the distribution of the diameter values. The histogram based shape representation reduces the shape comparison problem of the flexible protein to a simple distance calculation between 1D feature vectors. Experimental results indicate how the LD descriptor accurately treats the protein shape deformation. In addition, we use the LD descriptor for protein shape retrieval and compare it to the effectiveness of conventional shape descriptors. A sensitivity-specificity plot shows that the LD descriptor performs much better than the conventional shape descriptors in terms of consistency over a family of proteins and discernibility across families of different proteins. Conclusion Our study provides an effective technique for comparing the shape of flexible proteins. The experimental results demonstrate the insensitivity of the LD descriptor to protein shape deformation. The proposed method will be potentially useful for molecule retrieval with similar shapes and rapid structure retrieval for proteins. The demos and supplemental materials are available on https://engineering.purdue.edu/PRECISE/LDD webcite .
机译:背景技术通过比较它们的形状相似性来推断蛋白质功能的技术已经引起了广泛的关注。蛋白质是功能单元,其形状柔韧性在各种生物学过程中起着至关重要的作用。几种形状描述符通过将它们视为刚体,证明了蛋白质形状比较的能力。但这可能会导致对柔性蛋白质形状的错误比较。结果我们引入了一种有效的方法,通过调整局部直径(LD)描述符来比较灵活的蛋白质形状。 LD描述符,最近开发来处理基于骨架的形状变形[1],在这项工作中适用于捕获由蛋白质骨架运动引起的形状变形的不变性。为蛋白质表面上的每个采样点分配一个值,该值可测量该点附近3D形状的直径。 LD描述符根据直径值的分布以一维直方图的形式构建。基于直方图的形状表示将柔性蛋白质的形状比较问题简化为一维特征向量之间的简单距离计算。实验结果表明LD描述子如何正确处理蛋白质形状变形。此外,我们使用LD描述子进行蛋白质形状检索,并将其与常规形状描述子的有效性进行比较。敏感性-特异性图显示,LD描述符在蛋白质家族的一致性和不同蛋白质家族的可分辨性方面比传统的形状描述符表现更好。结论我们的研究提供了一种比较柔性蛋白质形状的有效技术。实验结果表明LD描述子对蛋白质形状变形不敏感。所提出的方法对于具有相似形状的分子检索和蛋白质的快速结构检索将可能有用。有关演示和补充材料,请访问https://engineering.purdue.edu/PRECISE/LDD网站。

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