| Literature DB >> 34216564 |
Naotaka Tsutsumi1, Qianhui Qu2, Maša Mavri3, Maibritt S Baggesen4, Shoji Maeda5, Deepa Waghray5, Christian Berg4, Brian K Kobilka5, Mette M Rosenkilde4, Georgios Skiniotis2, K Christopher Garcia6.
Abstract
Epstein-Barr virus (EBV) encodes a G protein-coupled receptor (GPCR) termed BILF1 that is essential for EBV-mediated immunosuppression and oncogenesis. BILF1 couples with inhibitory G protein (Gi), the major intracellular signaling effector for human chemokine receptors, and exhibits constitutive signaling activity; the ligand(s) for BILF1 are unknown. We studied the origins of BILF1's constitutive activity through structure determination of BILF1 bound to the inhibitory G protein (Gi) heterotrimer. The 3.2-Å resolution cryo-electron microscopy structure revealed an extracellular loop within BILF1 that blocked the typical chemokine binding site, suggesting ligand-autonomous receptor activation. Rather, amino acid substitutions within BILF1 transmembrane regions at hallmark ligand-activated class A GPCR "microswitches" stabilized a constitutively active BILF1 conformation for Gi coupling in a ligand-independent fashion. Thus, the constitutive activity of BILF1 promotes immunosuppression and virulence independent of ligand availability, with implications for the function of GPCRs encoded by related viruses and for therapeutic targeting of EBV.Entities:
Keywords: EBV; Epstein-Barr virus; G protein; G protein-coupled receptor; GPCR; cryo-EM; immune evasion; ligand-indpendent signaling; receptor; signaling; viral GPCR
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Year: 2021 PMID: 34216564 PMCID: PMC8282746 DOI: 10.1016/j.immuni.2021.06.001
Source DB: PubMed Journal: Immunity ISSN: 1074-7613 Impact factor: 43.474