Verna and Marrs Mclean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, TX 77030, USA.
Proc Natl Acad Sci U S A. 2010 Apr 27;107(17):7787-92. doi: 10.1073/pnas.0914877107. Epub 2010 Apr 12.
G protein-coupled receptors for dopamine and serotonin control signaling pathways targeted by many psychoactive drugs. A puzzle is how receptors with similar functions and nearly identical binding site structures, such as D2 dopamine receptors and 5-HT2A serotonin receptors, could evolve a mechanism that discriminates stringently in their cellular responses between endogenous neurotransmitters. We used the Difference Evolutionary Trace (Difference-ET) and residue-swapping to uncover two distinct sets of specificity-determining sequence positions. One at the ligand-binding pocket determines the relative affinities for these two ligands, and a distinct, surprising set of positions outside the binding site determines whether a bound ligand can trigger the conformational rearrangement leading to G protein activation. Thus one site specifies affinity while the other encodes a filter for efficacy. These findings demonstrate that allosteric pathways linking distant interactions via alternate conformational states enforce specificity independently of the ligand-binding site, such that either one may be rationally rekeyed to different ligands. The conversion of a dopamine receptor effectively into a serotonin receptor illustrates the plasticity of GPCR signaling during evolution, or in pathological states, and suggests new approaches to drug discovery, targeting both classes of sites.
G 蛋白偶联受体(GPCRs)可调控多种精神活性药物的作用靶点信号通路,其中包括多巴胺和血清素。一个难题是,具有相似功能和几乎相同结合位点结构的受体(如 D2 多巴胺受体和 5-HT2A 血清素受体),如何进化出一种机制,在细胞反应中对内源性神经递质进行严格区分。我们使用差异进化痕迹(Difference-ET)和残基交换揭示了两组决定特异性的独特序列位置。一组位于配体结合口袋,决定了这两种配体的相对亲和力,另一组位于结合位点之外的独特位置,决定了结合的配体是否能够引发导致 G 蛋白激活的构象重排。因此,一个位点决定亲和力,而另一个位点则编码了一种效力过滤器。这些发现表明,通过替代构象状态连接远距离相互作用的变构途径独立于配体结合位点强制执行特异性,使得其中一个位点可以被合理地重新连接到不同的配体上。将多巴胺受体有效地转化为血清素受体,说明了 GPCR 信号在进化过程中或在病理状态下的可塑性,并为药物发现提供了新的方法,针对这两类靶点。