Issue 23, 2024

In silico screening of LRRK2 WDR domain inhibitors using deep docking and free energy simulations

Abstract

The Critical Assessment of Computational Hit-Finding Experiments (CACHE) Challenge series is focused on identifying small molecule inhibitors of protein targets using computational methods. Each challenge contains two phases, hit-finding and follow-up optimization, each of which is followed by experimental validation of the computational predictions. For the CACHE Challenge #1, the Leucine-Rich Repeat Kinase 2 (LRRK2) WD40 Repeat (WDR) domain was selected as the target for in silico hit-finding and optimization. Mutations in LRRK2 are the most common genetic cause of the familial form of Parkinson's disease. The LRRK2 WDR domain is an understudied drug target with no known molecular inhibitors. Herein we detail the first phase of our winning submission to the CACHE Challenge #1. We developed a framework for the high-throughput structure-based virtual screening of a chemically diverse small molecule space. Hit identification was performed using the large-scale Deep Docking (DD) protocol followed by absolute binding free energy (ABFE) simulations. ABFEs were computed using an automated molecular dynamics (MD)-based thermodynamic integration (TI) approach. 4.1 billion ligands from Enamine REAL were screened with DD followed by ABFEs computed by MD TI for 793 ligands. 76 ligands were prioritized for experimental validation, with 59 compounds successfully synthesized and 5 compounds identified as hits, yielding a 8.5% hit rate. Our results demonstrate the efficacy of the combined DD and ABFE approaches for hit identification for a target with no previously known hits. This approach is widely applicable for the efficient screening of ultra-large chemical libraries as well as rigorous protein–ligand binding affinity estimation leveraging modern computational resources.

Graphical abstract: In silico screening of LRRK2 WDR domain inhibitors using deep docking and free energy simulations

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Article information

Article type
Edge Article
Submitted
21 Dec 2023
Accepted
10 Apr 2024
First published
11 Apr 2024
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2024,15, 8800-8812

In silico screening of LRRK2 WDR domain inhibitors using deep docking and free energy simulations

E. Gutkin, F. Gusev, F. Gentile, F. Ban, S. B. Koby, C. Narangoda, O. Isayev, A. Cherkasov and M. G. Kurnikova, Chem. Sci., 2024, 15, 8800 DOI: 10.1039/D3SC06880C

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