Distinct binding hotspots for natural and synthetic agonists of FFA4 from in silico approaches

Author:

Patient Guillaume1ORCID,Bedart Corentin1,Khan Naim. A2ORCID,Renault Nicolas1,Farce Amaury1ORCID

Affiliation:

1. University of Lille, Inserm, CHU Lille U1286 – INFINITE–Institute for Translational Research in Inflammation F-59000 Lille France

2. U1231 Inserm, Equipe NuTox, AgroSup Université de Bourgogne Dijon France

Abstract

AbstractFFA4 has gained interest in recent years since its deorphanization in 2005 and the characterization of the Free Fatty Acids receptors family for their therapeutic potential in metabolic disorders. The expression of FFA4 (also known as GPR120) in numerous organs throughout the human body makes this receptor a highly potent target, particularly in fat sensing and diet preference. This offers an attractive approach to tackle obesity and related metabolic diseases. Recent cryo‐EM structures of the receptor have provided valuable information for a potential active state although the previous studies of FFA4 presented diverging information. We performed molecular docking and molecular dynamics simulations of four agonist ligands, TUG‐891, Linoleic acid, α‐Linolenic acid, and Oleic acid, based on a homology model. Our simulations, which accumulated a total of 2 μs of simulation, highlighted two binding hotspots at Arg992.64 and Lys293 (ECL3). The results indicate that the residues are located in separate areas of the binding pocket and interact with various types of ligands, implying different potential active states of FFA4 and a highly adaptable binding intra‐receptor pocket. This article proposes additional structural characteristics and mechanisms for agonist binding that complement the experimental structures.

Funder

Université de Lille

Publisher

Wiley

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