Rana Soumendra, Sahoo Amita Rani
Chemical Biology Laboratory, School of Basic Sciences, Indian Institute of Technology Bhubaneswar, Odisha 751007, India.
Biochem Biophys Rep. 2015 Mar 24;1:85-96. doi: 10.1016/j.bbrep.2015.03.002. eCollection 2015 May.
C5a receptor (C5aR) is one of the major chemoattractant receptors of the druggable proteome that binds C5a, the proinflammatory polypeptide of complement cascade, triggering inflammation and SEPSIS. Here, we report the model structures of C5aR in both inactive and peptide agonist (YSFKPMPLaR; a=D-Ala) bound meta-active state. Assembled in CYANA and evolved over molecular dynamics (MD) in POPC bilayer, the inactive C5aR demonstrates a topologically unique compact heptahelical bundle topology harboring a β-hairpin in extracellular loop 2 (ECL2), derived from the atomistic folding simulations. The peptide agonist bound meta-active C5aR deciphers the "site2" at an atomistic resolution in the extracellular surface (ECS), in contrast to the previously hypothesized inter-helical crevice. With estimated Ki≈2.75 μM, the meta-active C5aR excellently rationalizes the IC (0.1-13 μM) and EC (0.01-6 μM) values, displayed by the peptide agonist in several signaling studies. Moreover, with Ki≈5.3×10 μM, the "site2" also illustrates selectivity, by discriminating the stereochemical mutant peptide (YSFkPMPLaR; k=D-Lys), known to be inert toward C5aR, up to 1 mM concentration. Topologically juxtaposed between the structures of rhodopsin and CXCR1, the C5aR models also display excellent structural correlations with the other G-protein coupled receptors (GPCRs). The models elaborated in the current study unravel many important structural insights previously not known for regulating the agonist binding and activation mechanism of C5aR.
C5a受体(C5aR)是可成药蛋白质组中的主要趋化因子受体之一,它与补体级联反应的促炎多肽C5a结合,引发炎症和脓毒症。在此,我们报告了C5aR在非活性状态和肽激动剂(YSFKPMPLaR;a = D-丙氨酸)结合的亚活性状态下的模型结构。通过CYANA组装并在POPC双层中进行分子动力学(MD)演化,非活性C5aR展示出一种拓扑结构独特的紧密七螺旋束拓扑结构,在细胞外环2(ECL2)中含有一个β-发夹结构,这是基于原子水平折叠模拟得出的。与之前假设的螺旋间缝隙不同,肽激动剂结合的亚活性C5aR在细胞外表面(ECS)以原子分辨率解析了“位点2”。亚活性C5aR的估计Ki≈2.75 μM,很好地解释了肽激动剂在多项信号研究中显示的IC(0.1 - 13 μM)和EC(0.01 - 6 μM)值。此外,“位点2”的Ki≈5.3×10 μM,通过区分立体化学突变肽(YSFkPMPLaR;k = D-赖氨酸)也显示出选择性,已知该突变肽在高达1 mM浓度下对C5aR无活性。C5aR模型在拓扑结构上介于视紫红质和CXCR1结构之间,与其他G蛋白偶联受体(GPCR)也显示出良好的结构相关性。本研究阐述的模型揭示了许多以前未知的关于调节C5aR激动剂结合和激活机制的重要结构见解。