Lee Yoonji, Choi Sun, Hyeon Changbong
National Leading Research Lab (NLRL) of Molecular Modeling and Drug Design College of Pharmacy Graduate School of Pharmaceutical Sciences and Global Top 5 Research Program, Ewha Womans University, Seoul, 120-750, Korea.
Proteins. 2014 May;82(5):727-43. doi: 10.1002/prot.24451. Epub 2013 Nov 22.
G-protein coupled receptors (GPCRs), a major gatekeeper of extracellular signals on plasma membrane, are unarguably one of the most important therapeutic targets. Given the recent discoveries of allosteric modulations, an allosteric wiring diagram of intramolecular signal transductions would be of great use to glean the mechanism of receptor regulation. Here, by evaluating betweenness centrality (CB ) of each residue, we calculate maps of information flow in GPCRs and identify key residues for signal transductions and their pathways. Compared with preexisting approaches, the allosteric hotspots that our CB -based analysis detects for A2 A adenosine receptor (A2 A AR) and bovine rhodopsin are better correlated with biochemical data. In particular, our analysis outperforms other methods in locating the rotameric microswitches, which are generally deemed critical for mediating orthosteric signaling in class A GPCRs. For A2 A AR, the inter-residue cross-correlation map, calculated using equilibrium structural ensemble from molecular dynamics simulations, reveals that strong signals of long-range transmembrane communications exist only in the agonist-bound state. A seemingly subtle variation in structure, found in different GPCR subtypes or imparted by agonist bindings or a point mutation at an allosteric site, can lead to a drastic difference in the map of signaling pathways and protein activity. The signaling map of GPCRs provides valuable insights into allosteric modulations as well as reliable identifications of orthosteric signaling pathways.
G蛋白偶联受体(GPCRs)是质膜上细胞外信号的主要守门人,无疑是最重要的治疗靶点之一。鉴于最近变构调节的发现,分子内信号转导的变构接线图对于深入了解受体调节机制将非常有用。在这里,通过评估每个残基的介数中心性(CB),我们计算了GPCRs中的信息流图谱,并确定了信号转导的关键残基及其途径。与先前存在的方法相比,我们基于CB的分析检测到的A2A腺苷受体(A2A AR)和牛视紫红质的变构热点与生化数据的相关性更好。特别是,我们的分析在定位旋转异构体微开关方面优于其他方法,这些微开关通常被认为对介导A类GPCRs中的正构信号至关重要。对于A2A AR,使用分子动力学模拟的平衡结构系综计算的残基间互相关图谱显示,仅在激动剂结合状态下存在远程跨膜通信的强信号。在不同的GPCR亚型中发现的看似细微的结构变化,或由激动剂结合或变构位点的点突变引起的结构变化,可能导致信号通路图谱和蛋白质活性的巨大差异。GPCRs的信号图谱为变构调节提供了有价值的见解,并可靠地识别了正构信号通路。