Members of the proteinase-activated receptor (PAR) subfamily of G protein-coupled receptors (GPCRs) play critical roles in processes like hemostasis, thrombosis, development, wound healing, inflammation, and cancer progression. Comprising PAR1-PAR4, these receptors are specifically activated by protease cleavage at their extracellular amino terminus, revealing a 'tethered ligand' that self-activates the receptor. This triggers complex intracellular signaling via G proteins and beta-arrestins, linking external protease signals to cellular functions. To date, direct structural visualization of these ligand-receptor complexes has been limited. Here, we present structural snapshots of activated PAR1 and PAR2 bound to their endogenous tethered ligands, revealing a shallow and constricted orthosteric binding pocket. Comparisons with antagonist-bound structures show minimal conformational changes in the TM6 helix and larger movements of TM7 upon activation. These findings reveal a common activation mechanism for PAR1 and PAR2, highlighting critical residues involved in ligand recognition. Additionally, the structure of PAR2 bound to a pathway selective antagonist, GB88, demonstrates how potent orthosteric engagement can be achieved by a small molecule mimicking the endogenous tethered ligand's interactions.
Structural basis for the activation of proteinase-activated receptors PAR1 and PAR2.
蛋白酶激活受体 PAR1 和 PAR2 激活的结构基础
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作者:Lyu Zongyang, Lyu Xiaoxuan, Malyutin Andrey G, Xia Guliang, Carney Daniel, Alves Vinicius M, Falk Matthew, Arora Nidhi, Zou Hua, McGrath Aaron P, Kang Yanyong
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Apr 26; 16(1):3931 |
| doi: | 10.1038/s41467-025-59138-x | 研究方向: | 免疫/内分泌 |
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