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Analysis of the TGFβ-induced Program in Primary Airway Epithelial Cells Shows Essential Role of NF-κB/RelA Signaling Network in Type II Epithelial Mesenchymal Transition

Overview
Journal BMC Genomics
Publisher Biomed Central
Specialty Genetics
Date 2015 Jul 19
PMID 26187636
Citations 55
Authors
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Abstract

Background: The airway epithelial cell plays a central role in coordinating the pulmonary response to injury and inflammation. Here, transforming growth factor-β (TGFβ) activates gene expression programs to induce stem cell-like properties, inhibit expression of differentiated epithelial adhesion proteins and express mesenchymal contractile proteins. This process is known as epithelial mesenchymal transition (EMT); although much is known about the role of EMT in cellular metastasis in an oncogene-transformed cell, less is known about Type II EMT, that occurring in normal epithelial cells. In this study, we applied next generation sequencing (RNA-Seq) in primary human airway epithelial cells to understand the gene program controlling Type II EMT and how cytokine-induced inflammation modifies it.

Results: Generalized linear modeling was performed on a two-factor RNA-Seq experiment of 6 treatments of telomerase immortalized human small airway epithelial cells (3 replicates). Using a stringent cut-off, we identified 3,478 differentially expressed genes (DEGs) in response to EMT. Unbiased transcription factor enrichment analysis identified three clusters of EMT regulators, one including SMADs/TP63 and another NF-κB/RelA. Surprisingly, we also observed 527 of the EMT DEGs were also regulated by the TNF-NF-κB/RelA pathway. This Type II EMT program was compared to Type III EMT in TGFβ stimulated A549 alveolar lung cancer cells, revealing significant functional differences. Moreover, we observe that Type II EMT modifies the outcome of the TNF program, reducing IFN signaling and enhancing integrin signaling. We confirmed experimentally that TGFβ-induced the NF-κB/RelA pathway by observing a 2-fold change in NF-κB/RelA nuclear translocation. A small molecule IKK inhibitor blocked TGFβ-induced core transcription factor (SNAIL1, ZEB1 and Twist1) and mesenchymal gene (FN1 and VIM) expression.

Conclusions: These data indicate that NF-κB/RelA controls a SMAD-independent gene network whose regulation is required for initiation of Type II EMT. Type II EMT dramatically affects the induction and kinetics of TNF-dependent gene networks.

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References
1.
Kasai H, Allen J, Mason R, Kamimura T, Zhang Z . TGF-beta1 induces human alveolar epithelial to mesenchymal cell transition (EMT). Respir Res. 2005; 6:56. PMC: 1177991. DOI: 10.1186/1465-9921-6-56. View

2.
Burke J, Pattoli M, Gregor K, Brassil P, MacMaster J, McIntyre K . BMS-345541 is a highly selective inhibitor of I kappa B kinase that binds at an allosteric site of the enzyme and blocks NF-kappa B-dependent transcription in mice. J Biol Chem. 2002; 278(3):1450-6. DOI: 10.1074/jbc.M209677200. View

3.
Chen L, Munoz-Antonia T, Cress W . Trim28 contributes to EMT via regulation of E-cadherin and N-cadherin in lung cancer cell lines. PLoS One. 2014; 9(7):e101040. PMC: 4077753. DOI: 10.1371/journal.pone.0101040. View

4.
Wang X, Belguise K, Kersual N, Kirsch K, Mineva N, Galtier F . Oestrogen signalling inhibits invasive phenotype by repressing RelB and its target BCL2. Nat Cell Biol. 2007; 9(4):470-8. PMC: 2394707. DOI: 10.1038/ncb1559. View

5.
Li X, Zhao Y, Tian B, Jamaluddin M, Mitra A, Yang J . Modulation of gene expression regulated by the transcription factor NF-κB/RelA. J Biol Chem. 2014; 289(17):11927-11944. PMC: 4002100. DOI: 10.1074/jbc.M113.539965. View