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HDAC4 induces the development of asthma by increasing Slug-upregulated CXCL12 expression through KLF5 deacetylation

机译:HDAC4通过通过KLF5脱乙酰化增加Slug-Uprogute CXCl12表达诱导哮喘的发展

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Asthma is a frequently occurring respiratory disease with an increasing incidence around the world. Airway inflammation and remodeling are important contributors to the occurrence of asthma. We conducted this study aiming at exploring the effect of Histone deacetylase 4 (HDAC4)-mediated Kruppel-like factor 5 (KLF5)/Slug/CXC chemokine ligand-12 (CXCL12) axis on the development of asthma in regulation of airway inflammation and remodeling. An asthmatic rat model was induced by ovalbumin (OVA) irrigation, and determined HDAC4, KLF5, Slug, and CXCL12 expression in the lung tissues by RT-qPCR and Western blot assay. OVA was also used to induce a cell model of asthma in human BEAS-2B and HBE135-E6E7bronchial epithelial cells. The airway hyperresponsiveness (AHR), and expression of inflammatory cytokines in model mice were examined using methacholine challenge test and ELISA. The biological behaviors were measured in asthma model bronchial smooth muscle cells (BSMCs) following loss- and gain- function approaches. The interactions between HDAC4, KLF5, Slug, and CXCL12 were also detected by IP assay, dual luciferase gene reporter assay, and ChIP. HDAC4 was upregulated in lung tissues of OVA-induced asthmatic mice, and inhibition of HDAC4 alleviated the airway inflammation and remodeling. HDAC4 increased KLF5 transcriptional activity through deacetylation; deacetylated KLF5 bound to the promoter of Slug and transcriptionally upregulated Slug expression, which in turn increased the expression of CXCL12 to promote the inflammation in bronchial epithelial cells and thus induce the proliferation and migration of BSMCs. Collectively, HDAC4 deacetylates KLF5 to upregulate Slug and CXCL12, thereby causing airway remodeling and facilitating progression of asthma.
机译:哮喘是一种经常发生的呼吸道疾病,世界各地的发病率越来越多。气道炎症和重塑是哮喘发生的重要贡献者。我们进行了该研究,旨在探讨组蛋白脱乙酰酶4(HDAC4)介导的KRUPPEL样系5(KLF5)/ SLUG / CXC趋化因子配体-12(CXCL12)轴对气道炎症和重塑中的哮喘发育的影响。通过RT-QPCR和Western印迹测定,通过卵烧蛋白(OVA)灌溉和测定的HDAC4,KLF5,SLUG和CXCL12表达和CXCL12在肺组织中诱导哮喘大鼠模型。 OVA还用于诱导人BEAS-2B和HBE135-E6E7BRONINIAL上皮细胞中哮喘的细胞模型。使用甲素攻击试验和ELISA检查气道高反应性(AHR)和模型小鼠中炎症细胞因子的表达。在损失和增益方法之后,在哮喘模型支气管平滑肌细胞(BSMC)中测量生物学行为。 HDAC4,KLF5,SLUG和CXCL12之间的相互作用也被IP测定,双荧光素酶基因报告分析和芯片检测到。 HDAC4在OVA诱导的哮喘小鼠的肺组织中上调,并且HDAC4的抑制减轻了气道炎症和重塑。 HDAC4通过脱乙酰化增加KLF5转录活性;脱乙酰化KLF5与滑块的启动子和转录上调的悬臂表达结合,这反过来增加了CXCL12的表达,促进支气管上皮细胞中的炎症,从而诱导BSMC的增殖和迁移。总的来说,HDAC4脱乙酰酯KLF5以上调粘合剂和CXCL12,从而导致气道重塑和促进哮喘的进展。

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