4.7 Article

Multistep virtual screening for rapid identification of G Protein-Coupled Receptors Kinase 2 inhibitors for heart failure treatment

Journal

CHEMOMETRICS AND INTELLIGENT LABORATORY SYSTEMS
Volume 185, Issue -, Pages 32-40

Publisher

ELSEVIER
DOI: 10.1016/j.chemolab.2018.12.015

Keywords

GRK2; GRK2 inhibitors; Heart failure; Multistep virtual screening; Molecular docking

Funding

  1. National Key Basic Research Program [2015CB910700]
  2. National Natural Science Foundation of China [81501619]
  3. Program for Science &Technology Innovation Talents of Hunan Province [2017TP1021]
  4. Project of Innovation-driven Plan in Central South University

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Heart failure (HF) has become an important social problem that seriously threatens human health due to its high morbidity and mortality. G Protein-Coupled Receptors Kinase 2 (GRK2), as a novel target of heart failure, is overexpressed in the pathogenesis and progression of HF. In this study, we conducted a multistep virtual screening process from the ZINC database to discover potential GRK2 inhibitors. First, by using 6 known GRK2 inhibitors with high bioactivity and diverse structures as the template molecules, 7499 compounds were obtained from ligand-based similarity screening by 4 types of fingerprints. Subsequently, these hits were further screened by three quantitative structure-activity relationship (QSAR) models, which were built by 197 known GRK2 compounds and represented by two-dimensional MOE descriptors (MOE2D), molecular fragments (MACCS) and 2- dimensional pharmacophore (CATS) based on random forest algorithm, respectively. These hit compounds were then filtered by three molecular docking packages (MOE, GOLD and GLIDE) to improve the docking accuracy for avoid losing candidate compounds. The compounds with high docking scores were selected for the evaluation of absorption, distribution, metabolism, excretion, and toxicity (ADMET). Finally, 17 compounds were identified the binding affinity to GRK2 by using SPR assay, three of which were considered as novel GRK2 inhibitors, and their binding modes with GRK2 active sites were analyzed. As new potential GRK2 inhibitors, COM5(K-D= 0.172 mu M) and COM17(K-D= 0.595 mu M) with the K-D value less than 1 mu M could be directly used in the next study, while the remaining hit COM4(K-D= 4.72 mu M) whose K-D over 1 mu M can be optimized into the required low nanomole range for further study.

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