Molecular bases for HOIPINs-mediated inhibition of LUBAC and innate immune responses.
Daisuke OikawaYusuke SatoFumiaki OhtakeKeidai KomakuraKazuki HanadaKoji SugawaraSeigo TerawakiYukari MizukamiHoang T PhuongKiyosei IioShingo ObikaMasaya FukushiTakashi IrieDaisuke TsurutaShinji SakamotoKeiji TanakaYasushi SaekiShuya FukaiFuminori TokunagaPublished in: Communications biology (2020)
The NF-κB and interferon antiviral signaling pathways play pivotal roles in inflammatory and innate immune responses. The LUBAC ubiquitin ligase complex, composed of the HOIP, HOIL-1L, and SHARPIN subunits, activates the canonical NF-κB pathway through Met1-linked linear ubiquitination. We identified small-molecule chemical inhibitors of LUBAC, HOIPIN-1 and HOIPIN-8. Here we show that HOIPINs down-regulate not only the proinflammatory cytokine-induced canonical NF-κB pathway, but also various pathogen-associated molecular pattern-induced antiviral pathways. Structural analyses indicated that HOIPINs inhibit the RING-HECT-hybrid reaction in HOIP by modifying the active Cys885, and residues in the C-terminal LDD domain, such as Arg935 and Asp936, facilitate the binding of HOIPINs to LUBAC. HOIPINs effectively induce cell death in activated B cell-like diffuse large B cell lymphoma cells, and alleviate imiquimod-induced psoriasis in model mice. These results reveal the molecular and cellular bases of LUBAC inhibition by HOIPINs, and demonstrate their potential therapeutic uses.
Keyphrases
- immune response
- signaling pathway
- diffuse large b cell lymphoma
- small molecule
- diabetic rats
- high glucose
- oxidative stress
- cell death
- induced apoptosis
- pi k akt
- lps induced
- dendritic cells
- toll like receptor
- nuclear factor
- type diabetes
- single molecule
- gene expression
- metabolic syndrome
- insulin resistance
- adipose tissue
- transcription factor
- candida albicans