Affiliation:
1. Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Hungarian Academy of Sciences, 2 Magyar Tudosok Korutja, Budapest H-1117, Hungary
Abstract
Metabotropic glutamate receptors (mGluR) are members of the class C G-Protein Coupled
Receptors (GPCR-s) and have eight subtypes. These receptors are responsible for a variety of functions
in the central and peripheral nervous systems and their modulation has therapeutic utility in neurological
and psychiatric disorders. It was previously established that selective orthosteric modulation of these
receptors is challenging, and this stimulated the search for allosteric modulators. Fragment-Based Drug
Discovery (FBDD) is a viable approach to find ligands binding at allosteric sites owing to their limited
size and interactions. However, it was also observed that the structure-activity relationship of allosteric
modulators is often sharp and inconsistent. This can be attributed to the characteristics of the allosteric
binding site of mGluRs that is a water channel where ligand binding is accompanied with induced fit
and interference with the water network, both playing a role in receptor activation. In this review, we
summarize fragment-based drug discovery programs on mGluR allosteric modulators and their contribution
identifying of new mGluR ligands with better activity and selectivity.
Publisher
Bentham Science Publishers Ltd.
Subject
Drug Discovery,General Medicine
Cited by
7 articles.
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