Bonacci Tabetha M, Mathews Jennifer L, Yuan Chujun, Lehmann David M, Malik Sundeep, Wu Dianqing, Font Jose L, Bidlack Jean M, Smrcka Alan V
Department of Pharmacology and Physiology, University of Rochester School of Medicine and Dentistry, Rochester, NY 14642, USA.
Science. 2006 Apr 21;312(5772):443-6. doi: 10.1126/science.1120378.
G protein betagamma subunits have potential as a target for therapeutic treatment of a number of diseases. We performed virtual docking of a small-molecule library to a site on Gbetagamma subunits that mediates protein interactions. We hypothesized that differential targeting of this surface could allow for selective modulation of Gbetagamma subunit functions. Several compounds bound to Gbetagamma subunits with affinities from 0.1 to 60 muM and selectively modulated functional Gbetagamma-protein-protein interactions in vitro, chemotactic peptide signaling pathways in HL-60 leukocytes, and opioid receptor-dependent analgesia in vivo. These data demonstrate an approach for modulation of G protein-coupled receptor signaling that may represent an important therapeutic strategy.
G蛋白βγ亚基有潜力成为多种疾病治疗的靶点。我们将一个小分子文库与Gβγ亚基上介导蛋白质相互作用的位点进行了虚拟对接。我们推测,对该表面的差异性靶向可能允许对Gβγ亚基功能进行选择性调节。几种化合物以0.1至60 μM的亲和力与Gβγ亚基结合,并在体外选择性调节功能性Gβγ-蛋白质-蛋白质相互作用、HL-60白细胞中的趋化肽信号通路以及体内阿片受体依赖性镇痛。这些数据证明了一种调节G蛋白偶联受体信号传导的方法,这可能代表一种重要的治疗策略。