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NF-κB Transcriptional Activity Is Modulated by FK506-binding Proteins FKBP51 and FKBP52

机译:NF-κB转录活性由FK506结合蛋白FKBP51和FKBP52调节

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Hsp90 binding immunophilins FKBP51 and FKBP52 modulate steroid receptor trafficking and hormone-dependent biological responses. With the purpose to expand this model to other nuclear factors that are also subject to nuclear-cytoplasmic shuttling, we analyzed whether these immunophilins modulate NF-kB signaling. It is demonstrated that FKBP51 impairs both the nuclear translocation rate of NF-kB and its transcriptional activity. The inhibitory action of FKBP51 requires neither the peptidylprolyレisomerase activity of the immunophilin nor its association with Hsp90. The TPR domain of FKBP51 is essential. On the other hand, FKBP52 favors the nuclear retention time of RelA, its association to a DNA consensus binding sequence, and NF-kB transcriptional activity, the latter effect being strongly dependent on the peptidylprolyレisomerase activity and also on the TPR domain of FKBP52, but its interaction with Hsp90 is not required. In unstimulatcd cells, FKBP51 forms endogenous complexes with cytoplasmic RelA. Upon cell stimulation with phorbol ester, the NF-kB soluble complex exchanges FKBP51 for FKBP52, and the NF-kB biological effect is triggered. Importantly, FKBP52 is functionally recruited to the promoter region of NF-kB target genes, whereas FKBP51 is released. Competition assays demonstrated that both immunophilins antagonize one another, and binding assays with puri-fied proteins suggest that the association of RelA and immuno-philins could be direct. These observations suggest that the biological action of NF-kB in different cell types could be positively regulated by a high FKBP52/FKBP51 expression ratio by favoring NF-kB nuclear retention, recruitment to the promoter regions of target genes, and transcriptional activity.
机译:HSP90结合免疫磷脂FKBP51和FKBP52调节类固醇受体贩运和激素依赖性生物反应。目的是为了将这种模型扩展到其他核心因子,这些核因子也受到核细胞质梭,我们分析了这些免疫素是否调节NF-KB信号传导。证明FKBP51损害了NF-KB的核易位率及其转录活动。 FKBP51的抑制作用既不需要免疫蛋白的肽基格异构酶活性,也不需要与Hsp90的关系。 FKBP51的TPR领域至关重要。另一方面,FKBP52有利于Rela的核保留时间,其与DNA共有结合序列和NF-KB转录活性的关联,后一种效果强烈依赖于肽基格レ异构酶活性,以及​​FKBP52的TPR结构域,但不需要与HSP90的互动。在未升起的细胞中,FKBP51与细胞质rela形成内源复合物。在用Phorbol酯的细胞刺激后,NF-KB可溶性复合物交换FKBP51,用于FKBP52,触发NF-KB生物学效应。重要的是,FKBP52在功能上募集到NF-KB靶基因的启动子区域,而FKBP51被释放。竞争测定表明,两个免疫磷脂彼此拮抗,与纯化蛋白质的结合测定表明,Rela和免疫素质的协会可能是直接的。这些观察结果表明,在不同细胞类型中NF-KB的生物学作用可以通过高级FKBP52 / FKBP51表达比来积极地调节,通过青睐NF-KB核保留,靶向靶基因的启动子区域和转录活性。

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