4.7 Review

Computational methods-guided design of modulators targeting protein-protein interactions (PPIs)

Journal

EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Volume 207, Issue -, Pages -

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2020.112764

Keywords

Protein-protein interactions; Undruggable; Peptidomimetics; Drug discovery; Hot spots

Funding

  1. National Natural Science Foundation of China [21778037, 81925034, 91753117, 81721004]
  2. Innovation Program of Shanghai Municipal Education Commission [2019-01-07-00-01-E00036]
  3. Shanghai Science and Technology Innovation [19431901600]
  4. Shanghai Health and Family Planning System Excellent Subject Leader and Excellent Young Medical Talents Training Program [2018BR12]

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Protein-protein interactions (PPIs) play a pivotal role in extensive biological processes and are thus crucial to human health and the development of disease states. Due to their critical implications, PPIs have been spotlighted as promising drug targets of broad-spectrum therapeutic interests. However, owing to the general properties of PPIs, such as flat surfaces, featureless conformations, difficult topologies, and shallow pockets, previous attempts were faced with serious obstacles when targeting PPIs and almost portrayed them as intractable for decades. To date, rapid progress in computational chemistry and structural biology methods has promoted the exploitation of PPIs in drug discovery. These techniques boost their cost-effective and high-throughput traits, and enable the study of dynamic PPI interfaces. Thus, computational methods represent an alternative strategy to target undruggable PPI interfaces and have attracted intense pharmaceutical interest in recent years, as exemplified by the accumulating number of successful cases. In this review, we first introduce a diverse set of computational methods used to design PPI modulators. Herein, we focus on the recent progress in computational strategies and provide a comprehensive overview covering various methodologies. Importantly, a list of recently-reported successful examples is highlighted to verify the feasibility of these computational approaches. Finally, we conclude the general role of computational methods in targeting PPIs, and also discuss future perspectives on the development of such aids. (C) 2020 Elsevier Masson SAS. All rights reserved.

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