变构调节
机制(生物学)
变构调节剂
功能(生物学)
细胞生物学
化学
计算机科学
生物
物理
生物化学
受体
量子力学
作者
Geng Chen,J. Blahová,Nico Staffen,Harald Hübner,Nadja Nunhöfer,Chen Qiu,Peter Gmeiner,Dorothée Weikert,Yang Du,Jun Xu
标识
DOI:10.1038/s41467-025-63422-1
摘要
Allosteric modulators have gained substantial interest in current GPCR drug discovery. Here, we present a mechanism of allosteric modulation involving the dimerization of GPR3, a promising drug target for metabolic diseases and central nervous system disorders. We show that GPR3 forms constitutive homodimers in live cells and reveal that the inhibitor AF64394 functions as a negative allosteric modulator (NAM) specifically targeting dimeric GPR3. Using cryogenic electron microscopy (cryo-EM), we determine the structures of the AF64394-bound GPR3 dimer and its dimer-Gs signaling complex. These high-resolution structures reveal that AF64394 binds to the transmembrane dimer interface. AF64394 binding prevents the dissociation of the GPR3 dimer upon engagement with Gs and restrains transmembrane helix 5 in an inactive-like intermediate conformation, leading to reduced coupling with Gs. Our studies unveil a mechanism of dimer-specific inhibition of signaling with significant implications for the discovery of drugs targeting GPCRs capable of dimerization.
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