首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Role of β-catenin-regulated CCN matricellular proteins in epithelial repair after inflammatory lung injury
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Role of β-catenin-regulated CCN matricellular proteins in epithelial repair after inflammatory lung injury

机译:β-catenin调节的CCN基质细胞蛋白在炎症性肺损伤后上皮修复中的作用

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摘要

Repair of the lung epithelium after injury is integral to the pathogenesis and outcomes of diverse inflammatory lung diseases. We previously reported that β-catenin signaling promotes epithelial repair after inflammatory injury, but the β-catenin target genes that mediate this effect are unknown. Herein, we examined which β-catenin transcriptional coactivators and target genes promote epithelial repair after inflammatory injury. Transmigration of human neutrophils across cultured monolayers of human lung epithelial cells resulted in a fall in transepithelial resistance and the formation of discrete areas of epithelial denudation (“microinjury”), which repaired via cell spreading by 96 h. In mice treated with intratracheal (i.t.) LPS or keratinocyte chemokine, neutrophil emigration was associated with increased permeability of the lung epithelium, as determined by increased bronchoalveolar lavage (BAL) fluid albumin concentration, which decreased over 3–6 days. Activation of β-catenin/p300-dependent gene expression using the compound ICG-001 accelerated epithelial repair in vitro and in murine models. Neutrophil transmigration induced epithelial expression of the β-catenin/p300 target genes Wnt-induced secreted protein (WISP) 1 and cysteine-rich (Cyr) 61, as determined by real-time PCR (qPCR) and immunostaining. Purified neutrophil elastase induced WISP1 upregulation in lung epithelial cells, as determined by qPCR. WISP1 expression increased in murine lungs after i.t. LPS, as determined by ELISA of the BAL fluid and qPCR of whole lung extracts. Finally, recombinant WISP1 and Cyr61 accelerated repair, and Cyr61-neutralizing antibodies delayed repair of the injured epithelium in vitro. We conclude that β-catenin/p300-dependent expression of WISP1 and Cyr61 is critical for epithelial repair and represents a potential therapeutic target to promote epithelial repair after inflammatory injury.
机译:损伤后肺上皮的修复是多种炎症性肺疾病的发病机制和结果不可或缺的部分。我们以前曾报道过,β-catenin信号传导可促进炎症损伤后的上皮修复,但介导此作用的β-catenin靶基因尚不清楚。在这里,我们检查了哪些β-catenin转录共激活因子和靶基因在炎症性损伤后促进上皮修复。人类嗜中性粒细胞跨培养的人肺上皮细胞单层迁移导致跨上皮抵抗力下降,并形成上皮剥脱的离散区域(“微损伤”),这种扩散通过细胞扩散96 h得以修复。在经气管内(i.t.)LPS或角质形成细胞趋化因子治疗的小鼠中,中性粒细胞迁移与肺上皮通透性增加有关,这取决于支气管肺泡灌洗液(BAL)液白蛋白浓度的增加,在3至6天内下降。使用化合物ICG-001激活β-catenin/ p300依赖性基因表达可在体外和小鼠模型中加速上皮修复。中性粒细胞迁移可诱导β-catenin/ p300靶基因Wnt诱导的分泌蛋白(WISP)1和富含半胱氨酸(Cyr)61的上皮表达,这是通过实时PCR(qPCR)和免疫染色确定的。纯化的嗜中性粒细胞弹性蛋白酶诱导肺上皮细胞中WISP1上调,如qPCR所确定。 I.t.后小鼠肺中WISP1表达增加。 LPS,通过BAL液的ELISA和全肺提取物的qPCR确定。最后,重组WISP1和Cyr61加速了修复,而Cyr61中和抗体在体外延迟了受损上皮的修复。我们得出结论,WISP1和Cyr61的依赖于β-catenin/ p300的表达对于上皮修复至关重要,并且代表了炎症损伤后促进上皮修复的潜在治疗靶标。

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