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首页> 外文期刊>Antioxidants and redox signalling >An Endothelial Hsp70-TLR4 Axis Limits Nox3 Expression and Protects Against Oxidant Injury in Lungs
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An Endothelial Hsp70-TLR4 Axis Limits Nox3 Expression and Protects Against Oxidant Injury in Lungs

机译:内皮细胞Hsp70-TLR4轴限制了Nox3的表达并防止肺部氧化损伤

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Aims: Oxidants play a critical role in the pathogenesis of acute lung injury (ALI). Nox3 is a novel member of the NADPH oxidase (Nox) family of oxidant-generating enzymes, which our laboratory had previously identified to be induced in the lungs of TLR4(-/-) mice. However, the physiologic role of Nox3 induction in lungs and its precise relationship to TLR4 are unknown. Furthermore, the cell compartment involved and the signaling mechanisms of Nox3 induction are unknown. Results: We identified that Nox3 is regulated by heat shock protein 70 (Hsp70) signaling via a TLR4-Trif-signal transducer and activator of transcription 3 (Stat3) pathway and that Nox3 induction leads to increased oxidant injury and death in mice and lung endothelial cells. We generated Nox3(-/-)/TLR4(-/-) double knockout mice, endothelial-targeting lentiviral silencing constructs, and endothelial-targeted Stat3(-/-) mice to specifically demonstrate that Nox3 induction is responsible for the pro-oxidant, proapoptotic phenotype of TLR4(-/-) mice. We also show that an endothelial Hsp70-TLR4-Trif-Stat3 axis is required to suppress deleterious Nox3 induction. Innovation: To date, a physiologic role for Nox3 in oxidant-induced ALI has not been identified. In addition, we generated unique double knockout mice and endothelial-targeted lentiviral silencing constructs to specifically demonstrate the role of a TLR4 signaling pathway in regulating pro-oxidant generation. Conclusions: We identified an endothelial TLR4-Trif antioxidant pathway that leads to the inhibition of a novel NADPH oxidase, Nox3, in lungs and lung endothelial cells. We also identified the role of a TLR4 ligand, Hsp70, in suppressing Nox3 in basal and pro-oxidant conditions. These studies identify potentially new therapeutic targets in oxidant-induced ALI.
机译:目的:氧化剂在急性肺损伤(ALI)的发病机理中起关键作用。 Nox3是NADPH氧化酶(Nox)氧化剂产生酶家族的新成员,该酶先前已被我们的实验室确定为在TLR4(-/-)小鼠的肺中被诱导。但是,尚不清楚Nox3诱导在肺中的生理作用及其与TLR4的确切关系。此外,所涉及的细胞室和Nox3诱导的信号传导机制尚不清楚。结果:我们发现Nox3受热休克蛋白70(Hsp70)信号通过TLR4-Trif信号转导子和转录激活因子3(Stat3)通路的调控,并且Nox3诱导导致小鼠和肺内皮细胞氧化损伤和死亡增加。细胞。我们生成了Nox3(-/-)/ TLR4(-/-)双敲除小鼠,靶向内皮的慢病毒沉默构建体和靶向内皮的Stat3(-/-)小鼠,以专门证明Nox3诱导是促氧化剂的原因。 ,TLR4(-/-)小鼠的促凋亡表型。我们还显示,需要内皮Hsp70-TLR4-Trif-Stat3轴来抑制有害的Nox3诱导。创新:迄今为止,尚未确定Nox3在氧化剂诱导的ALI中的生理作用。此外,我们生成了独特的双基因敲除小鼠和靶向内皮的慢病毒沉默构建体,以具体证明TLR4信号通路在调节促氧化剂生成中的作用。结论:我们鉴定了一种内皮TLR4-Trif抗氧化剂途径,该途径可抑制肺和肺内皮细胞中一种新型NADPH氧化酶Nox3。我们还确定了TLR4配体Hsp70在基础和促氧化剂条件下抑制Nox3的作用。这些研究确定了氧化剂诱导的ALI中潜在的新治疗靶标。

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