Literature DB >> 32015480

Principle and design of pseudo-natural products.

George Karageorgis1,2, Daniel J Foley1,3, Luca Laraia1,4, Herbert Waldmann5,6.   

Abstract

Natural products (NPs) are a significant source of inspiration towards the discovery of new bioactive compounds based on novel molecular scaffolds. However, there are currently only a small number of guiding synthetic strategies available to generate novel NP-inspired scaffolds, limiting both the number and types of compounds accessible. In this Perspective, we discuss a design approach for the preparation of biologically relevant small-molecule libraries, harnessing the unprecedented combination of NP-derived fragments as an overarching strategy for the synthesis of new bioactive compounds. These novel 'pseudo-natural product' classes retain the biological relevance of NPs, yet exhibit structures and bioactivities not accessible to nature or through the use of existing design strategies. We also analyse selected pseudo-NP libraries using chemoinformatic tools, to assess their molecular shape diversity and properties. To facilitate the exploration of biologically relevant chemical space, we identify design principles and connectivity patterns that would provide access to unprecedented pseudo-NP classes, offering new opportunities for bioactive small-molecule discovery.

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Year:  2020        PMID: 32015480     DOI: 10.1038/s41557-019-0411-x

Source DB:  PubMed          Journal:  Nat Chem        ISSN: 1755-4330            Impact factor:   24.427


  40 in total

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4.  Natural-product-derived fragments for fragment-based ligand discovery.

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Review 5.  Twenty years on: the impact of fragments on drug discovery.

Authors:  Daniel A Erlanson; Stephen W Fesik; Roderick E Hubbard; Wolfgang Jahnke; Harren Jhoti
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6.  SMURF: Genomic mapping of fungal secondary metabolite clusters.

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8.  Fragment-Based Screening of a Natural Product Library against 62 Potential Malaria Drug Targets Employing Native Mass Spectrometry.

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Review 5.  Cell-Free Exploration of the Natural Product Chemical Space.

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Review 6.  Natural product-informed exploration of chemical space to enable bioactive molecular discovery.

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Journal:  RSC Med Chem       Date:  2020-12-16

7.  Phenotyping Reveals Targets of a Pseudo-Natural-Product Autophagy Inhibitor.

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8.  Expanding the antibacterial selectivity of polyether ionophore antibiotics through diversity-focused semisynthesis.

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