Institute for Molecular Bioscience, The University of Queensland , Brisbane, Queensland 4072, Australia.
J Med Chem. 2014 Oct 23;57(20):8459-70. doi: 10.1021/jm500956p. Epub 2014 Oct 8.
The G-protein coupled receptor (C3aR) for human inflammatory protein complement C3a is an important component of immune, inflammatory, and metabolic diseases. A flexible compound (N2-[(2,2-diphenylethoxy)acetyl]-l-arginine, 4), known as a weak C3aR antagonist (IC50 μM), was transformed here into potent agonists (EC50 nM) of human macrophages (Ca(2+) release in HMDM) by incorporating aromatic heterocycles. Antagonists were also identified. A linear correlation between binding affinity for C3aR and calculated hydrogen-bond interaction energy of the heteroatom indicated that its hydrogen-bonding capacity influenced ligand affinity and function mediated by C3aR. Hydrogen-bond accepting heterocycles (e.g., imidazole) conferred the highest affinity and agonist potency (e.g., 21, EC50 24 nM, Ca(2+), HMDM) with comparable efficacy and immunostimulatory activity as that of C3a in activating human macrophages (Ca(2+), IL1β, TNFα, CCL3). These potent and selective modulators of C3aR, inactivated by a C3aR antagonist, are stable C3a surrogates for interrogating roles for C3aR in physiology and disease.
人源炎症蛋白补体 C3 的 G 蛋白偶联受体 (C3aR) 是免疫、炎症和代谢疾病的重要组成部分。一种已知的弱 C3aR 拮抗剂(N2-[(2,2-二苯乙氧基)乙酰基]-L-精氨酸,4)的柔性化合物,通过引入芳杂环,转化为有效的人巨噬细胞激动剂(HMDM 中的 Ca(2+) 释放)。还鉴定了拮抗剂。C3aR 的结合亲和力与杂原子计算氢键相互作用能之间存在线性相关性,表明其氢键结合能力影响 C3aR 介导的配体亲和力和功能。氢键接受杂环(如咪唑)赋予了最高的亲和力和激动剂效力(例如 21,EC50 24 nM,Ca(2+),HMDM),其在激活人巨噬细胞(Ca(2+)、IL1β、TNFα、CCL3)方面的功效和免疫刺激活性与 C3a 相当。这些有效的 C3aR 调节剂是 C3a 的选择性失活模拟物,是研究 C3aR 在生理和疾病中作用的稳定 C3a 替代物。