Das Aurosikha, Gupta Pulkit K, Rana Soumendra
Chemical Biology Laboratory, School of Basic Sciences, Indian Institute of Technology Bhubaneswar, Odisha, Bhubaneswar, India.
J Cell Biochem. 2022 Nov;123(11):1841-1856. doi: 10.1002/jcb.30320. Epub 2022 Aug 17.
The complement fragment C5a is one of the most potent proinflammatory glycoproteins liberated by the activation of the biochemical cascade of the complement system. C5a is established to interact with a set of genomically related transmembrane receptors, like C5aR1 (CD88, C5aR) and C5aR2 (GPR77, C5L2) with comparable affinity. The C5aR1 is a classical G-protein-coupled receptor (GPCR), whereas C5aR2 is a nonclassical GPCR that tailors immune cell activity potentially through β-arrestins rather than G-proteins. Currently, the exact function of the C5aR2 is actively debated in the context of C5aR1, even though both C5aR1 and C5aR2 are coexpressed on myriads of tissues. The functional relevance of C5aR2 appears to be context-dependent compared to the C5aR1, which has received enormous attention for its role in both acute and chronic inflammatory diseases. In addition, the structure of C5aR2 and its interaction specificity toward C5a is not structurally elucidated in the literature so far. The current study has attempted to close the gap by generating highly refined model structures of C5aR2, respectively in free (inactive), complexed to C-terminal peptide of C5a (meta-active) and the C5a (active), embedded to a model palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine bilayer. The computational modeling and the 1.5-μs molecular dynamics data presented in the current study are expected to further enrich the understanding of C5a-C5aR2 interaction compared to C5a-C5aR1, which will surely help in elaborating the currently debated biological function of C5aR2 better in the foreseeable future.
补体片段C5a是补体系统生化级联反应激活后释放的最有效的促炎糖蛋白之一。已证实C5a能与一组基因组相关的跨膜受体相互作用,如C5aR1(CD88,C5aR)和C5aR2(GPR77,C5L2),亲和力相当。C5aR1是一种经典的G蛋白偶联受体(GPCR),而C5aR2是一种非经典的GPCR,可能通过β-抑制蛋白而非G蛋白来调节免疫细胞活性。目前,尽管C5aR1和C5aR2在众多组织中共同表达,但C5aR2的确切功能在C5aR1的背景下仍存在激烈争论。与在急性和慢性炎症疾病中发挥作用而备受关注的C5aR1相比,C5aR2的功能相关性似乎依赖于环境。此外,到目前为止,文献中尚未对C5aR2的结构及其与C5a的相互作用特异性进行结构解析。当前的研究试图通过分别生成C5aR2在游离(无活性)、与C5a的C末端肽复合(亚活性)和与C5a复合(活性)状态下的高度精细模型结构来填补这一空白,这些结构嵌入到一个棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱模型双层膜中。与C5a-C5aR1相比,本研究中呈现的计算建模和1.5微秒的分子动力学数据有望进一步丰富对C5a-C5aR2相互作用的理解,这肯定有助于在可预见的未来更好地阐明目前存在争议的C5aR2的生物学功能。