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Perturbation of neddylation-dependent NF-kappa B responses in the intestinal epithelium drives apoptosis and inhibits resolution of mucosal inflammation

机译:肠上皮细胞中依赖于归纳化反应的NF-κB反应引起细胞凋亡并抑制粘膜炎症的消退

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Recent work has revealed a central role for neddylation (the conjugation of a Nedd8 moiety to Cullin proteins) in the fine-tuning of the NF-kappa B response (via Cullin-1). In the present study, we investigated the contribution of Cullin-1 neddylation and NF-kappa B signaling to mucosal inflammatory responses in vitro and in vivo. Initial in vitro studies using cultured intestinal epithelial cells revealed that the neddylation inhibitor MLN4924 prominently induces the deneddylation of Cullin-1. Parallel Western blot, luciferase reporter, and gene target assays identified MLN4924 as a potent inhibitor of intestinal epithelial NF-kappa B. Subsequent studies revealed that MLN4924 potently induces epithelial apoptosis but only in the presence of additional inflammatory stimuli. In vivo administration of MLN4924 (3 mg/kg per day) in a TNBS-induced colitis model significantly accentuated disease severity. Indeed, MLN4924 resulted in worsened clinical scores and increased mortality early in the inflammatory response. Histologic analysis of the colon revealed that neddylation inhibition results in increased tissue damage and significantly increased mucosal apoptosis as determined by TUNEL and cleaved caspase-3 staining, which was particularly prominent within the epithelium. Extensions of these studies revealed that ongoing inflammation is associated with significant loss of deneddylase-1 (SENP8) expression. These studies reveal that intact Cullin-1 neddylation is central to resolution of acute inflammation.
机译:最近的工作表明,在微调NF-κB反应(通过Cullin-1)中,二联作用(Nedd8部分与Cullin蛋白的结合)起着核心作用。在目前的研究中,我们调查了Cullin-1的Neddylation和NF-κB信号传导在体外和体内对粘膜炎症反应的作用。使用培养的肠上皮细胞进行的初步体外研究显示,氰基化抑制剂MLN4924显着诱导Cullin-1的树突化。平行蛋白质印迹法,荧光素酶报告基因和基因靶标测定法确定MLN4924是肠道上皮NF-κB的有效抑制剂。随后的研究表明,MLN4924可以有效诱导上皮细胞凋亡,但仅在存在其他炎症刺激时才有效。在TNBS诱发的结肠炎模型中,体内给予MLN4924(每天3 mg / kg)会大大加重疾病的严重程度。确实,MLN4924导致炎症反应早期的临床评分恶化和死亡率增加。结肠的组织学分析表明,如通过TUNEL和裂解的caspase-3染色所确定的那样,抑制腺苷酸化会导致组织损伤增加并显着增加粘膜凋亡,这在上皮细胞中尤为明显。这些研究的扩展表明,持续的炎症与denddylase-1(SENP8)表达的大量丧失有关。这些研究表明,完整的Cullin-1腺苷化对于解决急性炎症至关重要。

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