William Harvey Research Institute, Barts and The London School of Medicine and Dentistry, and.
Centre for Inflammation and Therapeutic Innovation, Queen Mary University of London, Charterhouse Square, London, United Kingdom.
J Clin Invest. 2020 Jan 2;130(1):359-373. doi: 10.1172/JCI131609.
N-3 docosapentaenoic acid-derived resolvin D5 (RvD5n-3 DPA) is diurnally regulated in peripheral blood and exerts tissue-protective actions during inflammatory arthritis. Here, using an orphan GPCR screening approach coupled with functional readouts, we investigated the receptor(s) involved in mediating the leukocyte-directed actions of RvD5n-3 DPA and identified GPR101 as the top candidate. RvD5n-3 DPA bound to GPR101 with high selectivity and stereospecificity, as demonstrated by a calculated KD of approximately 6.9 nM. In macrophages, GPR101 knockdown limited the ability of RvD5n-3 DPA to upregulate cyclic adenosine monophosphate, phagocytosis of bacteria, and efferocytosis. Inhibition of this receptor in mouse and human leukocytes abrogated the pro-resolving actions of RvD5n-3 DPA, including the regulation of bacterial phagocytosis in neutrophils. Knockdown of the receptor in vivo reversed the protective actions of RvD5n-3 DPA in limiting joint and gut inflammation during inflammatory arthritis. Administration of RvD5n-3 DPA during E. coli-initiated inflammation regulated neutrophil trafficking to the site of inflammation, increased bacterial phagocytosis by neutrophils and macrophages, and accelerated the resolution of infectious inflammation. These in vivo protective actions of RvD5n-3 DPA were limited when Gpr101 was knocked down. Together, our findings demonstrate a fundamental role for GPR101 in mediating the leukocyte-directed actions of RvD5n-3 DPA.
N-3 二十二碳五烯酸衍生的分辨率 D5(RvD5n-3 DPA)在周围血液中呈昼夜节律调节,并在炎症性关节炎期间发挥组织保护作用。在这里,我们使用孤儿 GPCR 筛选方法结合功能读数,研究了介导 RvD5n-3 DPA 白细胞定向作用的受体,并确定 GPR101 为首选。RvD5n-3 DPA 与 GPR101 具有高选择性和立体特异性结合,如计算出的 KD 约为 6.9 nM 所示。在巨噬细胞中,GPR101 的敲低限制了 RvD5n-3 DPA 上调环磷酸腺苷、细菌吞噬和细胞凋亡的能力。在小鼠和人白细胞中抑制该受体,消除了 RvD5n-3 DPA 的促解决作用,包括对中性粒细胞中细菌吞噬的调节。体内敲低该受体逆转了 RvD5n-3 DPA 在炎症性关节炎期间限制关节和肠道炎症的保护作用。在大肠杆菌引发的炎症期间给予 RvD5n-3 DPA 可调节中性粒细胞向炎症部位的迁移,增加中性粒细胞和巨噬细胞的细菌吞噬作用,并加速感染性炎症的消退。当 Gpr101 被敲低时,RvD5n-3 DPA 的这些体内保护作用受到限制。总之,我们的发现表明 GPR101 在介导 RvD5n-3 DPA 的白细胞定向作用中起基本作用。