Exploring Novel Antidepressants Targeting G Protein-Coupled Receptors and Key Membrane Receptors Based on Molecular Structures

Author:

Yao Hanbo12,Wang Xiaodong12,Chi Jiaxin12,Chen Haorong12,Liu Yilin12,Yang Jiayi12,Yu Jiaqi12,Ruan Yongdui1,Xiang Xufu3,Pi Jiang12ORCID,Xu Jun-Fa12

Affiliation:

1. Guangdong Provincial Key Laboratory of Medical Molecular Diagnostics, The First Dongguan Affiliated Hospital, Guangdong Medical University, Dongguan 523808, China

2. Institute of Laboratory Medicine, School of Medical Technology, Guangdong Medical University, Dongguan 523808, China

3. The Key Laboratory for Biomedical Photonics of MOE at Wuhan National Laboratory for Optoelectronics—Hubei Bioinformatics and Molecular Imaging Key Laboratory, Systems Biology Theme, Department of Biomedical Engineering, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China

Abstract

Major Depressive Disorder (MDD) is a complex mental disorder that involves alterations in signal transmission across multiple scales and structural abnormalities. The development of effective antidepressants (ADs) has been hindered by the dominance of monoamine hypothesis, resulting in slow progress. Traditional ADs have undesirable traits like delayed onset of action, limited efficacy, and severe side effects. Recently, two categories of fast-acting antidepressant compounds have surfaced, dissociative anesthetics S-ketamine and its metabolites, as well as psychedelics such as lysergic acid diethylamide (LSD). This has led to structural research and drug development of the receptors that they target. This review provides breakthroughs and achievements in the structure of depression-related receptors and novel ADs based on these. Cryo-electron microscopy (cryo-EM) has enabled researchers to identify the structures of membrane receptors, including the N-methyl-D-aspartate receptor (NMDAR) and the 5-hydroxytryptamine 2A (5-HT2A) receptor. These high-resolution structures can be used for the development of novel ADs using virtual drug screening (VDS). Moreover, the unique antidepressant effects of 5-HT1A receptors in various brain regions, and the pivotal roles of the α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR) and tyrosine kinase receptor 2 (TrkB) in regulating synaptic plasticity, emphasize their potential as therapeutic targets. Using structural information, a series of highly selective ADs were designed based on the different role of receptors in MDD. These molecules have the favorable characteristics of rapid onset and low adverse drug reactions. This review offers researchers guidance and a methodological framework for the structure-based design of ADs.

Funder

National Natural Science Foundation of China

High Talent Project of Guangdong Province

Natural Science Foundation of Guangdong Province

Characteristic Innovation Project of Universities in Guangdong Province

Key Project of Universities in Guangdong Province

Innovation Team Project of Universities in Guangdong Province

Science and Technology Project of Dongguan

Doctoral Initial Funding of Guangdong Medical University

Discipline Construction Project of Guangdong Medical University

In Vitro Diagnostics Industry College Project

Open Research Fund of Songshan Lake Materials Laboratory

Open Research Fund for Key Laboratory of Tropical Disease Control Sun Yat-sen University, Ministry of Education

Youth Research Projects of Guangdong Medical University

Publisher

MDPI AG

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