Structural basis of odorant recognition by a mammalian class II odorant receptor.

Gil, Minsu; Choi, Chulwon; Kim, Minseok; Bae, Minsik; Lee, Hajin; Choi, Intae; Im, Wonpil; Choi, Hee-Jung · Sci Adv · 2026

basic_science · Level V

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Abstract

Mammalian odorant receptors (ORs) sense diverse environmental chemicals, yet structural insights into odorant recognition by mammalian class II ORs remain limited. Here, we present the cryo-EM structure of a native mammalian class II OR, mouse Olfr412, a human OR1D2 ortholog, bound to the odorant methyl-<i>trans</i>-cinnamate and the G<sub>s</sub> protein. The odorant-binding pocket of Olfr412 is located deeper within the transmembrane domain than that of the class I OR OR51E2 and is largely composed of poorly conserved hydrophobic residues, providing a structural basis for broad odorant recognition in class II ORs. Structural and molecular dynamics analyses suggest that the conserved Y<sup>6x55</sup> plays a key role in odorant recognition and activation, functionally paralleling R<sup>6x59</sup> in class I ORs and is further stabilized by intramolecular interaction with the conserved ECL2 residue E<sup>45x51</sup>. Together, our findings uncover structural mechanisms underlying odorant recognition and activation in class II ORs.

Medical subject headings