| Literature DB >> 34385321 |
Jordi Haubrich1, Joan Font1, Robert B Quast2, Anne Goupil-Lamy3, Pauline Scholler1, Damien Nevoltris4, Francine Acher5, Patrick Chames4, Philippe Rondard1, Laurent Prézeau6, Jean-Philippe Pin6.
Abstract
There is growing interest in developing biologics due to their high target selectivity. The G protein-coupled homo- and heterodimeric metabotropic glutamate (mGlu) receptors regulate many synapses and are promising targets for the treatment of numerous brain diseases. Although subtype-selective allosteric small molecules have been reported, their effects on the recently discovered heterodimeric receptors are often not known. Here, we describe a nanobody that specifically and fully activates homodimeric human mGlu4 receptors. Molecular modeling and mutagenesis studies revealed that the nanobody acts by stabilizing the closed active state of the glutamate binding domain by interacting with both lobes. In contrast, this nanobody does not activate the heterodimeric mGlu2-4 but acts as a pure positive allosteric modulator. These data further reveal how an antibody can fully activate a class C receptor and bring further evidence that nanobodies represent an alternative way to specifically control mGlu receptor subtypes.Entities:
Keywords: G protein–coupled receptor; activation mechanism; agonist; single-domain antibody
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Year: 2021 PMID: 34385321 PMCID: PMC8379968 DOI: 10.1073/pnas.2105848118
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205