Department of Internal Medicine, University of Wisconsin-Madison School of Medicine and Public Health (SMPH), Madison, WI, United States.
Department of Statistics, University of Wisconsin-Madison, Madison, WI, United States.
Front Immunol. 2021 Mar 1;12:633654. doi: 10.3389/fimmu.2021.633654. eCollection 2021.
Epigenetics plays an important role in the priming the dynamic response of airway epithelial cells to infectious and environmental stressors. Here, we examine the epigenetic role of the SWI/SNF Related, Matrix Associated, Actin Dependent Regulator of Chromatin A4 (SMARCA4) in the epithelial response to RSV infection. Depletion of SMARCA4 destabilized the abundance of the SMARCE1/ARID1A SWI/SNF subunits, disrupting the innate response and triggering a hybrid epithelial/mesenchymal (E/M) state. Assaying SMARCA4 complex-regulated open chromatin domains by transposase cleavage -next generation sequencing (ATAC-Seq), we observed that the majority of cleavage sites in uninfected cells have reduced chromatin accessibility. Paradoxically, SMARCA4 complex-depleted cells showed enhanced RSV-inducible chromatin opening and gene expression in the EMT pathway genes, , and . Focusing on the key MMP9, we observed that SMARCA4 complex depletion reduced basal BRD4 and RNA Polymerase II binding, but enhanced BRD4/Pol II binding in response to RSV infection. In addition, we observed that MMP9 secretion in SMARCA4 complex deficient cells contributes to mesenchymal transition, cellular fusion (syncytia) and subepithelial myofibroblast transition. We conclude the SMARCA4 complex is a transcriptional repressor of epithelial plasticity, whose depletion triggers a hybrid E/M state that affects the dynamic response of the small airway epithelial cell in mucosal remodeling paracrine MMP9 activity.
表观遗传学在启动气道上皮细胞对感染和环境应激原的动态反应中起着重要作用。在这里,我们研究了 SWI/SNF 相关、基质相关、肌动蛋白依赖的染色质 A4(SMARCA4)在呼吸道合胞病毒(RSV)感染后上皮反应中的表观遗传学作用。SMARCA4 的耗竭使 SMARCE1/ARID1A SWI/SNF 亚基的丰度不稳定,破坏了固有反应,并引发了混合上皮/间充质(E/M)状态。通过转座酶切割-下一代测序(ATAC-Seq)检测 SMARCA4 复合物调节的开放染色质结构域,我们观察到未感染细胞中的大多数切割位点的染色质可及性降低。矛盾的是,SMARCA4 复合物耗尽的细胞显示出增强的 RSV 诱导的染色质开放和 EMT 途径基因、、的基因表达。关注关键的 MMP9,我们观察到 SMARCA4 复合物耗竭降低了基础 BRD4 和 RNA 聚合酶 II 的结合,但增强了 BRD4/Pol II 在 RSV 感染时的结合。此外,我们观察到在 SMARCA4 复合物缺陷细胞中 MMP9 的分泌有助于间充质转化、细胞融合(合胞体)和黏膜下肌纤维母细胞转化。我们得出结论,SMARCA4 复合物是上皮可塑性的转录抑制剂,其耗竭会触发混合 E/M 状态,从而影响小气道上皮细胞在黏膜重塑中的动态反应和旁分泌 MMP9 活性。