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首页> 外文期刊>PLoS Computational Biology >Overexpression of Heat Shock Protein 72 Attenuates NF-κB Activation Using a Combination of Regulatory Mechanisms in Microglia
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Overexpression of Heat Shock Protein 72 Attenuates NF-κB Activation Using a Combination of Regulatory Mechanisms in Microglia

机译:热激蛋白72的过表达通过结合小胶质细胞调控机制来减弱NF-κB的活化。

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Overexpression of the inducible heat shock protein 70, Hsp72, has broadly cytoprotective effects and improves outcome following stroke. A full understanding of how Hsp72 protects cells against injury is elusive, though several distinct mechanisms are implicated. One mechanism is its anti-inflammatory effects. We study the effects of Hsp72 overexpression on activation of the transcription factor NF-κB in microglia combining experimentation and mathematical modeling, using TNFα to stimulate a microglial cell line stably overexpressing Hsp72. We find that Hsp72 overexpression reduces the amount of NF-κB DNA binding activity, activity of the upstream kinase IKK, and amount of IκBα inhibitor phosphorylated following TNFα application. Simulations evaluating several proposed mechanisms suggest that inhibition of IKK activation is an essential component of its regulatory activities. Unexpectedly we find that Hsp72 overexpression reduces the initial amount of the RelA/p65 NF-κB subunit in cells, contributing to the attenuated response. Neither mechanism in isolation, however, is sufficient to attenuate the response, providing evidence that Hsp72 relies upon multiple mechanisms to attenuate NF-κB activation. An additional observation from our study is that the induced expression of IκBα is altered significantly in Hsp72 expressing cells. While the mechanism responsible for this observation is not known, it points to yet another means by which Hsp72 may alter the NF-κB response. This study illustrates the multi-faceted nature of Hsp72 regulation of NF-κB activation in microglia and offers further clues to a novel mechanism by which Hsp72 may protect cells against injury.
机译:诱导型热休克蛋白70 Hsp72的过表达具有广泛的细胞保护作用,并改善中风后的预后。尽管牵涉到几种不同的机制,但对Hsp72如何保护细胞免受损伤的全面了解尚不清楚。一种机制是其抗炎作用。我们结合实验和数学模型,使用TNFα刺激稳定表达Hsp72的小胶质细胞系,研究了Hsp72过表达对小胶质细胞转录因子NF-κB活化的影响。我们发现,Hsp72过表达降低了NF-κBDNA结合活性,上游激酶IKK的活性以及TNFα应用后磷酸化的IκBα抑制剂的数量。评估提出的几种机制的模拟表明,抑制IKK激活是其调节活性的重要组成部分。出乎意料的是,我们发现Hsp72过表达减少了细胞中RelA / p65NF-κB亚基的初始量,从而导致了反应减弱。但是,孤立的任何一种机制都不足以减弱反应,这提供了Hsp72依赖多种机制来减弱NF-κB激活的证据。我们研究的另一个观察结果是,在表达Hsp72的细胞中,IκBα的诱导表达发生了显着变化。虽然尚不清楚引起这种观察的机制,但它指出了Hsp72可以改变NF-κB反应的另一种方法。这项研究说明了Hsp72调节小胶质细胞中NF-κB活化的多方面性质,并为Hsp72保护细胞免受损伤的新机制提供了进一步的线索。

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