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Viral MLKL Homologs Subvert Necroptotic Cell Death by Sequestering Cellular RIPK3

Cell Rep.. 2019-09; 
Emma J.Petrie, Jarrod J.Sandow, Wil I.L.Lehmann, Lung-YuLiang, Diane Coursier, Samuel N.Young, Wilhelmus J.A.Kersten, Cheree Fitzgibbon, André L.Samson, Annette V.Jacobsen, Kym N.Lowes, Amanda E.Au, HélèneJousset Sabroux, NajouaLalaoui, Andrew I.Webb, GuillaumeLessene, GerardManning, Isabelle S.Lucet, James M.Murphy
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Gene Synthesis DNA encoding the BAV Rmil (Uniprot A0A1L3IZS3) and COTV157 (Uniprot A0A097IVX6) were synthesized by ATUM (CA, USA), and SPV140 (Uniprot Q8V3F6) by Genscript (NJ, USA) Get A Quote

摘要

Necroptotic cell death has been implicated in many human pathologies and is thought to have evolved as an innate immunity mechanism. The pathway relies on two key effectors: the kinase receptor-interacting protein kinase 3 (RIPK3) and the terminal effector, the pseudokinase mixed-lineage kinase-domain-like (MLKL). We identify proteins with high sequence similarity to the pseudokinase domain of MLKL in poxvirus genomes. Expression of these proteins from the BeAn 58058 and Cotia poxviruses, but not swinepox, in human and mouse cells blocks cellular MLKL activation and necroptotic cell death. We show that viral MLKL-like proteins function as dominant-negative mimics of host MLKL, which inhibit necroptosis by seque... More

关键词

poxvirus ; innate immunity; pseudokinase, necroptosis, programmed necrosis, MLKL, RIPK3
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