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Jones, D. T. D.

Publications and source records attributed to Jones, D. T. D..

3 recordsLinked to original sources

Tethered agonist activated ADGRF1 structure reveals molecular preference for Gq signaling

Adhesion G-Protein Coupled Receptors (aGPCRs) have evolved an activation mechanism to translate extracellular force into liberation of a tethered agonist (TA) to modulate cell signalling. We report here that ADGRF1 is the first class B GPCR shown to signal through all major G-protein classes and identify the structural basis for its Gq preference by cryo-EM. Our structure shows that Gq over Gs preference in ADGRF1 derives from tighter packing at the conserved F569 of the TA, altering contacts between TM helix I and VII, with a concurrent rearrangement of TM helices VII and VIII at the site of G recruitment. Gs signalling is also more sensitive to mutation of TA or binding site residues than Gq. Our work advances the understanding of aGPCR TA activation in molecular detail, identifying structural features that potentially explain preferential signal modulation.

biochemistry↗

A Fusion Protein Platform for Analyzing Tethered Agonism in the Adhesion Family of G Protein-Coupled Receptors

Adhesion G Protein-Coupled Receptor (aGPCR) signaling influences development and homeostasis in a wide range of tissues. In the current model for aGPCR signaling, ligand binding liberates or unmasks a highly conserved tethered agonist (TA) that acts as an intramolecular ligand to stimulate G protein coupling. However, a systematic, comprehensive examination of signaling has not been performed for all aGPCR family members. Here, we report a platform for profiling TA-dependent activities of aGPCRs in several different assays and apply it to all 33 human family members. Activity profiling identified a heterogeneity of responses among these aGPCRs, with only [~]50% showing robust, TA-dependent signals. AlphaFold2 predictions assessing TA engagement in the predicted intramolecular binding pocket aligned with the TA-dependence of the cellular responses. The signaling information in this dataset is a comprehensive resource relevant for the investigation of all human aGPCRs and for targeting aGPCRs therapeutically.

biochemistry↗

Key features of inhibitor binding to the human mitochondrial pyruvate carrier hetero-dimer

The mitochondrial pyruvate carrier (MPC) has emerged as a promising drug target for metabolic disorders, including non-alcoholic steatohepatitis and diabetes, metabolically dependent cancers and neurodegenerative diseases. Human MPC is a protein complex, but the composition of its active form is debated and the mechanisms of transport and inhibition are not resolved. We have recombinantly expressed and purified the human hetero-complex MPC1L/MPC2 and demonstrate that it is a functional hetero-dimer, like the yeast MPC hetero-dimers. Unlike the latter, human MPC1L/MPC2 binds the known inhibitors with high potencies. We identify the essential chemical features shared between these structurally diverse inhibitors and demonstrate that high affinity binding is not attributed to covalent bond formation with MPC cysteines, as previously thought. We also identify 14 new inhibitors of MPC, one outperforming the most potent compound UK5099 by tenfold. Two of them are the commonly prescribed drugs entacapone and nitrofurantoin, suggesting possible off-target mechanisms associated with their adverse effects. This work advances our understanding of MPC inhibition and will accelerate the development of clinically relevant MPC modulators.

molecular biology↗