Literature DB >> 24655571

Molpher: a software framework for systematic chemical space exploration.

David Hoksza1, Petr Skoda, Milan Voršilák, Daniel Svozil.   

Abstract

BACKGROUND: Chemical space is virtual space occupied by all chemically meaningful organic compounds. It is an important concept in contemporary chemoinformatics research, and its systematic exploration is vital to the discovery of either novel drugs or new tools for chemical biology.
RESULTS: In this paper, we describe Molpher, an open-source framework for the systematic exploration of chemical space. Through a process we term 'molecular morphing', Molpher produces a path of structurally-related compounds. This path is generated by the iterative application of so-called 'morphing operators' that represent simple structural changes, such as the addition or removal of an atom or a bond. Molpher incorporates an optimized parallel exploration algorithm, compound logging and a two-dimensional visualization of the exploration process. Its feature set can be easily extended by implementing additional morphing operators, chemical fingerprints, similarity measures and visualization methods. Molpher not only offers an intuitive graphical user interface, but also can be run in batch mode. This enables users to easily incorporate molecular morphing into their existing drug discovery pipelines.
CONCLUSIONS: Molpher is an open-source software framework for the design of virtual chemical libraries focused on a particular mechanistic class of compounds. These libraries, represented by a morphing path and its surroundings, provide valuable starting data for future in silico and in vitro experiments. Molpher is highly extensible and can be easily incorporated into any existing computational drug design pipeline.

Entities:  

Year:  2014        PMID: 24655571      PMCID: PMC3998053          DOI: 10.1186/1758-2946-6-7

Source DB:  PubMed          Journal:  J Cheminform        ISSN: 1758-2946            Impact factor:   5.514


  53 in total

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9.  Stochastic voyages into uncharted chemical space produce a representative library of all possible drug-like compounds.

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  11 in total

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5.  Scaffold analysis of PubChem database as background for hierarchical scaffold-based visualization.

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6.  Molecular structures enumeration and virtual screening in the chemical space with RetroPath2.0.

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7.  Nonpher: computational method for design of hard-to-synthesize structures.

Authors:  Milan Voršilák; Daniel Svozil
Journal:  J Cheminform       Date:  2017-03-20       Impact factor: 5.514

8.  SYBA: Bayesian estimation of synthetic accessibility of organic compounds.

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9.  CReM: chemically reasonable mutations framework for structure generation.

Authors:  Pavel Polishchuk
Journal:  J Cheminform       Date:  2020-04-22       Impact factor: 5.514

10.  Web-based 3D-visualization of the DrugBank chemical space.

Authors:  Mahendra Awale; Jean-Louis Reymond
Journal:  J Cheminform       Date:  2016-05-04       Impact factor: 5.514

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