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Transcription factor YY1 inhibits the expression of THY1 to promote interstitial pulmonary fibrosis by activating the HSF1/miR-214 axis

机译:转录因子YY1通过激活HSF1 / miR-214轴抑制THY1的表达以促进间质性肺纤维化

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摘要

Interstitial pulmonary fibrosis (IPF) is a progressive disease of diverse etiology manifesting with proliferation of lung fibroblasts and accumulation of extracellular matrix deposition in pulmonary interstitium. Recent studies show aberrant expression of mRNAs and microRNAs (miRNAs) in human embryonic pulmonary fibroblasts (HEPFs). In this study, we investigated effects of the YY1/HSF1/miR-214/THY1 axis on the functions of HEPFs and IPF. Loss- and gain-of-function tests were conducted to identify roles of YY1, HSF1, miR-214, and THY1 in IPF. As determined by RT-qPCR or western blot assay, silencing YY1 down-regulated HSF1 expression and attenuated the expression of pro-proliferative and fibrosis markers in HEPFs. Meanwhile, viability of HEPFs was impeded by YY1 knockdown. The binding relationship between miR-214 and THY1 was verified using dual-luciferase reporter assay. In HEPFs, down-regulation of HSF1 reduced miR-214 expression to repress proliferation and fibrogenic transformation of HEPFs, while inhibition of miR-214 expression could restrain the fibrogenic transformation property of HEPFs by up-regulating THY1. Subsequently, IPF model in mice was induced by bleomycin treatment. These animal experiments validated the protective effects of YY1 knockdown against IPF-induced lung pathological manifestations, which could be reversed by THY1 knockdown. Our study demonstrates the important involvement of YY1/HSF1/miR-214/THY1 axis in the development of IPF.
机译:间质性肺纤维化(IPF)是一种病因多样的进行性疾病,表现为肺成纤维细胞的增殖和肺间质中细胞外基质沉积的积累。最近的研究表明人类胚胎肺成纤维细胞(HEPFs)中的mRNA和microRNA(miRNA)异常表达。在这项研究中,我们调查了YY1 / HSF1 / miR-214 / THY1轴对HEPF和IPF功能的影响。进行了功能丧失和功能增强测试,以确定YY1,HSF1,miR-214和THY1在IPF中的作用。通过RT-qPCR或Western blot分析确定,沉默YY1可下调HEPFs中HSF1的表达并减弱其增殖和纤维化标记物的表达。同时,YY1敲低阻碍了HEPF的生存。使用双荧光素酶报告基因分析验证了miR-214与THY1之间的结合关系。在HEPFs中,HSF1的下调降低了miR-214的表达以抑制HEPFs的增殖和纤维化转化,而抑制miR-214的表达则可能通过上调THY1而抑制了HEPFs的纤维化转化特性。随后,通过博来霉素处理诱导小鼠的IPF模型。这些动物实验验证了YY1敲除对IPF诱导的肺部病理表现的保护作用,而THY1敲除可以逆转这种保护作用。我们的研究表明,YY1 / HSF1 / miR-214 / THY1轴在IPF的发展中具有重要作用。

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