Structural Basis of Ligand-Specific Orthosteric-Allosteric Coupling and Sensory Tuning in the Human Bitter Taste Receptor TAS2R14
Zhou, T.; Wang, J.; Wang, C.; Han, Z.; Zhang, Y.; Ouyang, Z.; Ye, S.; Wu, S.; Qiao, A.
Show abstract
The bitter taste receptor TAS2R14 recognizes hundreds of structurally diverse ligands, yet the mechanisms governing its broad promiscuity, graded agonist efficacy, and multi-site regulation remain unclear. Here, we report cryo-EM structures of TAS2R14-Gi1 complexes bound to 3,5-diiodosalicylic acid (DA), flufenamic acid (FA) and aristolochic acid (AA) at resolutions of 2.44 [A], 2.39 [A], and 2.69 [A], with a clear efficacy hierarchy of AA > FA > DA. Transmembrane helix 6 (TM6) acts as a core regulatory hub, with agonist binding triggering 12 [A] lever-like TM6 rearrangements to reshape receptor interfaces and modulate G-protein coupling strength. We also identify cholesterol hemisuccinate (CHS) as a new TAS2R14 orthosteric agonist, selectively potentiating DA-mediated signaling potency by [~]5-fold via allosteric-orthosteric coupling without affecting FA or AA. Our findings show TM6 dynamics unify TAS2R14s key functional features, advancing insights into bitter receptor activation and sterol regulation.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Molecular basis for allosteric agonism and G protein subtype selectivity of galanin receptors 98%
- Molecular insights into ago-allosteric modulation of the human glucagon-like peptide-1 receptor 98%
- A distinctive ligand recognition mechanism by the human vasoactive intestinal polypeptide receptor 2 98%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.