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首页> 外文期刊>The FASEB Journal >Cathepsin G degradation of phospholipid transfer protein (PLTP) augments pulmonary inflammation
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Cathepsin G degradation of phospholipid transfer protein (PLTP) augments pulmonary inflammation

机译:磷脂转移蛋白(PLTP)的组织蛋白酶G降解肺炎

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Phospholipid transfer protein (PLTP) regulates phospholipid transport in the circulation and is highly expressed within the lung epithelium, where it is secreted into the alveolar space. Since PLTP expression is increased in chronic obstructive pulmonary disease (COPD), this study aimed to determine how PLTP affects lung signaling and inflammation. Despite its increased expression, PLTP activity decreased by 80% in COPD bronchoalveolar lavage fluid (BALF) due to serine protease cleavage, primarily by cathepsin G. Likewise, PLTP BALF activity levels decreased by 20 and 40% in smoke-exposed mice and in the media of smoke-treated small airway epithelial (SAE) cells, respectively. To assess how PLTP affected inflammatory responses in a lung injury model, PLTP siRNA or recombinant protein was administered to the lungs of mice prior to LPS challenge. Silencing PLTP at baseline caused a 68% increase in inflammatory cell infiltration, a 120 and 340% increase in ERK and NF-κB activation, and increased MMP-9, IL1β, and IFN-γ levels after LPS treatment by 39, 140, and 190%, respectively. Conversely, PLTP protein administration countered these effects in this model. Thus, these findings establish a novel anti-inflammatory function of PLTP in the lung and suggest that proteolytic cleavage of PLTP by cathepsin G may enhance the injurious inflammatory responses that occur in COPD.—Brehm, A., Geraghty, P., Campos, M., Garcia-Arcos, I., Dabo, A. J., Gaffney, A., Eden, E., Jiang, X.-C., D'Armiento, J., Foronjy, R. Cathepsin G degradation of phospholipid transfer protein (PLTP) augments pulmonary inflammation.
机译:磷脂转移蛋白(PLTP)调节循环中的磷脂运输,在肺上皮内高度表达,在那里它分泌到肺泡空间中。由于PLTP表达在慢性阻塞性肺疾病(COPD)中增加,因此该研究旨在确定PLTP如何影响肺信号和炎症。尽管表达增加,但由于丝氨酸蛋白酶裂解,PLTP活性在COPD支气肺泡灌洗液(BALF)中减少了80%,主要由组织蛋白酶G.同样地,PLTP BALF活性水平在烟雾暴露的小鼠中减少了20%和40%烟雾处理的小气道上皮(SAE)细胞的培养基。为了评估PLTP在LPS挑战之前给予肺损伤模型中的炎症反应,将PLTP siRNA或重组蛋白施用于小鼠的肺部。基线中的沉默PLTP引起炎症细胞浸润的68%,ERK和NF-κB活化的增加,120%和340%,并在LPS处理后的MMP-9,IL1β和IFN-γ水平增加39,140,分别为190%。相反,PLTP蛋白质给药在该模型中反对这些效果。因此,这些发现在肺中建立了PLTP的新型抗炎功能,并表明COMEPSIN G的PLTP蛋白水解切割可以增强在COPD.-BREHM,A.,Geraghty,P.,Campos中发生的有害炎症反应, M.,Garcia-Arcos,I.,Dabo,AJ,Gaffney,A.,Eden,E.,Jiang,X.-C.,D'Armiento,J.,Foronjy,R.磷脂转移蛋白的降解磷脂转移蛋白的降解(PLTP)增加肺炎。

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