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      Advances in the Development of Shape Similarity Methods and Their Application in Drug Discovery

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          Abstract

          Molecular similarity is a key concept in drug discovery. It is based on the assumption that structurally similar molecules frequently have similar properties. Assessment of similarity between small molecules has been highly effective in the discovery and development of various drugs. Especially, two-dimensional (2D) similarity approaches have been quite popular due to their simplicity, accuracy and efficiency. Recently, the focus has been shifted toward the development of methods involving the representation and comparison of three-dimensional (3D) conformation of small molecules. Among the 3D similarity methods, evaluation of shape similarity is now gaining attention for its application not only in virtual screening but also in molecular target prediction, drug repurposing and scaffold hopping. A wide range of methods have been developed to describe molecular shape and to determine the shape similarity between small molecules. The most widely used methods include atom distance-based methods, surface-based approaches such as spherical harmonics and 3D Zernike descriptors, atom-centered Gaussian overlay based representations. Several of these methods demonstrated excellent virtual screening performance not only retrospectively but also prospectively. In addition to methods assessing the similarity between small molecules, shape similarity approaches have been developed to compare shapes of protein structures and binding pockets. Additionally, shape comparisons between atomic models and 3D density maps allowed the fitting of atomic models into cryo-electron microscopy maps. This review aims to summarize the methodological advances in shape similarity assessment highlighting advantages, disadvantages and their application in drug discovery.

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          Most cited references188

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                Author and article information

                Contributors
                Journal
                Front Chem
                Front Chem
                Front. Chem.
                Frontiers in Chemistry
                Frontiers Media S.A.
                2296-2646
                25 July 2018
                2018
                : 6
                : 315
                Affiliations
                Laboratory for Structural Bioinformatics, Center for Biosystems Dynamics Research, RIKEN , Yokohama, Japan
                Author notes

                Edited by: Honglin Li, East China University of Science and Technology, China

                Reviewed by: Pedro Ballester, Institut National de la Santé et de la Recherche Médicale (INSERM), France; Antreas Afantitis, NovaMechanics Ltd., Cyprus; Xiaofeng Liu, East China University of Science and Technology, China

                *Correspondence: Kam Y. J. Zhang kamzhang@ 123456riken.jp

                This article was submitted to Medicinal and Pharmaceutical Chemistry, a section of the journal Frontiers in Chemistry

                Article
                10.3389/fchem.2018.00315
                6068280
                30090808
                2b7fecbe-5c05-40ce-a37a-33aeddb9cb7a
                Copyright © 2018 Kumar and Zhang.

                This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

                History
                : 10 April 2018
                : 09 July 2018
                Page count
                Figures: 4, Tables: 3, Equations: 7, References: 206, Pages: 21, Words: 17434
                Categories
                Chemistry
                Review

                molecular similarity,virtual screening,shape similarity,drug discovery,gaussian overlay,spherical harmonics,3d zernike descriptors

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