Protein–ligand interactions from a quantum fragmentation perspective: The case of the SARS-CoV-2 main protease interacting with α-ketoamide inhibitors

Author:

Genovese Luigi1ORCID,Dawson William2ORCID,Nakajima Takahito2ORCID,Cristiglio Viviana3ORCID,Vallet Valérie4ORCID,Masella Michel5ORCID

Affiliation:

1. Univ. Grenoble Alpes, CEA, IRIG-MEM-L_Sim 1 , 38000 Grenoble, France

2. RIKEN Center for Computational Science 2 , Kobe, Japan

3. Institut Laue Langevin 3 , 71 Av. des Martyrs, 38000 Grenoble, France

4. Université de Lille, CNRS, UMR 8523 - PhLAM - Physique des Lasers Atomes et Molécules 4 , F-59000 Lille, France

5. Laboratoire de Biologie Structurale et Radiobiologie, Service de Bioénergétique, Biologie Structurale et Mécanismes, Institut Joliot, CEA Saclay 5 , F-91191 Gif sur Yvette Cedex, France

Abstract

We present a hybrid, multi-method, computational scheme for protein/ligand systems well suited to be used on modern and forthcoming massively parallel computing systems. The scheme relies on a multi-scale polarizable molecular modeling, approach to perform molecular dynamics simulations, and on an efficient Density Functional Theory (DFT) linear scaling method to post-process simulation snapshots. We use this scheme to investigate recent α-ketoamide inhibitors targeting the main protease of the SARS-CoV-2 virus. We assessed the reliability and the coherence of the hybrid scheme, in particular, by checking the ability of MM and DFT to reproduce results from high-end ab initio computations regarding such inhibitors. The DFT approach enables an a posteriori fragmentation of the system and an investigation into the strength of interaction among identified fragment pairs. We show the necessity of accounting for a large set of plausible protease/inhibitor conformations to generate reliable interaction data. Finally, we point out ways to further improve α-ketoamide inhibitors to more strongly interact with particular protease domains neighboring the active site.

Funder

CEA-Riken Collaboration

MaX EU Center of Excellence

French LabeX CaPPA

ANR Project OVERSEE

CPER CLIMIBIO

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Roadmap on electronic structure codes in the exascale era;Modelling and Simulation in Materials Science and Engineering;2023-08-07

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