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化合物 A 是一种选择性糖皮质激素受体调节剂,可增强热休克蛋白 Hsp70 基因启动子的激活。

Compound A, a selective glucocorticoid receptor modulator, enhances heat shock protein Hsp70 gene promoter activation.

机构信息

Laboratory of Experimental Cancer Research (LECR), Department of Radiation Therapy & Experimental Cancer Research, Ghent University, Ghent, Belgium.

出版信息

PLoS One. 2013 Jul 30;8(7):e69115. doi: 10.1371/journal.pone.0069115. Print 2013.

Abstract

Compound A possesses glucocorticoid receptor (GR)-dependent anti-inflammatory properties. Just like classical GR ligands, Compound A can repress NF-κB-mediated gene expression. However, the monomeric Compound A-activated GR is unable to trigger glucocorticoid response element-regulated gene expression. The heat shock response potently activates heat shock factor 1 (HSF1), upregulates Hsp70, a known GR chaperone, and also modulates various aspects of inflammation. We found that the selective GR modulator Compound A and heat shock trigger similar cellular effects in A549 lung epithelial cells. With regard to their anti-inflammatory mechanism, heat shock and Compound A are both able to reduce TNF-stimulated IκBα degradation and NF-κB p65 nuclear translocation. We established an interaction between Compound A-activated GR and Hsp70, but remarkably, although the presence of the Hsp70 chaperone as such appears pivotal for the Compound A-mediated inflammatory gene repression, subsequent novel Hsp70 protein synthesis is uncoupled from an observed CpdA-induced Hsp70 mRNA upregulation and hence obsolete in mediating CpdA's anti-inflammatory effect. The lack of a Compound A-induced increase in Hsp70 protein levels in A549 cells is not mediated by a rapid proteasomal degradation of Hsp70 or by a Compound A-induced general block on translation. Similar to heat shock, Compound A can upregulate transcription of Hsp70 genes in various cell lines and BALB/c mice. Interestingly, whereas Compound A-dependent Hsp70 promoter activation is GR-dependent but HSF1-independent, heat shock-induced Hsp70 expression alternatively occurs in a GR-independent and HSF1-dependent manner in A549 lung epithelial cells.

摘要

化合物 A 具有糖皮质激素受体 (GR) 依赖性抗炎特性。与经典的 GR 配体一样,化合物 A 可以抑制 NF-κB 介导的基因表达。然而,单体化合物 A 激活的 GR 无法触发糖皮质激素反应元件调节的基因表达。热休克反应强烈激活热休克因子 1 (HSF1),上调 HSP70,这是一种已知的 GR 伴侣,同时也调节炎症的各个方面。我们发现,选择性 GR 调节剂化合物 A 和热休克在 A549 肺上皮细胞中引发类似的细胞效应。就其抗炎机制而言,热休克和化合物 A 都能够减少 TNF 刺激的 IκBα 降解和 NF-κB p65 核易位。我们建立了化合物 A 激活的 GR 与 HSP70 之间的相互作用,但值得注意的是,尽管 HSP70 伴侣的存在对于化合物 A 介导的炎症基因抑制至关重要,但随后新的 HSP70 蛋白合成与观察到的 CpdA 诱导的 HSP70 mRNA 上调脱耦,因此在介导 CpdA 的抗炎作用方面已经过时。化合物 A 诱导的 A549 细胞中 HSP70 蛋白水平增加的缺乏不是由 HSP70 的快速蛋白酶体降解介导的,也不是由化合物 A 诱导的翻译普遍阻断介导的。与热休克类似,化合物 A 可以在上皮细胞和 BALB/c 小鼠的各种细胞系中上调 HSP70 基因的转录。有趣的是,虽然化合物 A 依赖性 HSP70 启动子激活依赖于 GR,但不依赖于 HSF1,但热休克诱导的 HSP70 表达以 GR 独立和 HSF1 依赖的方式发生在 A549 肺上皮细胞中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f96a/3728325/efe9e5e2e6bc/pone.0069115.g001.jpg

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