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Inhibition of IRF5 cellular activity with cell-penetrating peptides that target homodimerization

机译:抑制IRF5细胞活性,具有靶向偶体的细胞渗透肽

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The transcription factor interferon regulatory factor 5 (IRF5) plays essential roles in pathogen-induced immunity downstream of Toll-, nucleotide-binding oligomerization domain–, and retinoic acid–inducible gene I–like receptors and is an autoimmune susceptibility gene. Normally, inactive in the cytoplasm, upon stimulation, IRF5 undergoes posttranslational modification(s), homodimerization, and nuclear translocation, where dimers mediate proinflammatory gene transcription. Here, we report the rational design of cell-penetrating peptides (CPPs) that disrupt IRF5 homodimerization. Biochemical and imaging analysis shows that IRF5-CPPs are cell permeable, noncytotoxic, and directly bind to endogenous IRF5. IRF5-CPPs were selective and afforded cell type– and species-specific inhibition. In plasmacytoid dendritic cells, inhibition of IRF5-mediated interferon-α production corresponded to a dose-dependent reduction in nuclear phosphorylated IRF5 [p(Sersup462/sup)IRF5], with no effect on pIRF5 levels. These data support that IRF5-CPPs function downstream of phosphorylation. Together, data support the utility of IRF5-CPPs as novel tools to probe IRF5 activation and function in disease.
机译:转录因子温干扰素调节因子5(IRF5)在降尔,核苷酸结合寡聚化结构域和视黄酸诱导基因I形受体的下游的病原体诱导的免疫中起重要作用,并且是自身免疫易感基因。通常,在刺激后,在细胞质中无活性,IRF5经历后期改变的修饰,同源化和核易位,其中二聚体介导促炎基因转录。在这里,我们报告了破坏IRF5同源化的细胞渗透肽(CPP)的合理设计。生物化学和成像分析表明,IRF5-CPP是细胞可渗透的,非胞毒毒性,直接与内源IRF5结合。 IRF5-CPPS是选择性和提供的细胞类型和物种特异性抑制。在血浆骨质树突细胞中,抑制IRF5介导的干扰素-α的产生对应于核磷酸化IRF5的剂量依赖性还原[P(Ser 462 )IRF5],对PiRF5水平无影响。这些数据支持IRF5-CPP在磷酸化下游功能。数据支持IRF5-CPPS作为探测IRF5激活和疾病功能的新型工具的效用。

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