Literature DB >> 29208683

IL-33 and ST2 mediate FAK-dependent antitumor immune evasion through transcriptional networks.

Bryan Serrels1, Niamh McGivern2, Marta Canel3, Adam Byron2, Sarah C Johnson4, Henry J McSorley3, Niall Quinn2, David Taggart3, Alex Von Kreigsheim2, Stephen M Anderton3, Alan Serrels1,3, Margaret C Frame1.   

Abstract

Focal adhesion kinase (FAK) mediates tumor cell-intrinsic behaviors that promote tumor growth and metastasis. We previously showed that FAK also induces the expression of inflammatory genes that inhibit antitumor immunity in the microenvironment. We identified a crucial, previously unknown role for the dual-function cytokine interleukin-33 (IL-33) in FAK-dependent immune evasion. In murine squamous cell carcinoma (SCC) cells, specifically nuclear FAK enhanced the expression of the genes encoding IL-33, the chemokine CCL5, and the soluble, secreted form of the IL-33 receptor, called soluble ST2 (sST2). The abundance of IL-33 and CCL5 was increased in FAK-positive SCC cells but not in normal keratinocytes. IL-33 associated with FAK in the nucleus, and the FAK-IL-33 complex interacted with a network of chromatin modifiers and transcriptional regulators, including TAF9, WDR82, and BRD4, which promote the activity of nuclear factor κB (NF-κB) and its induction of genes encoding chemokines, including CCL5. We did not detect secretion of IL-33 from FAK-positive SCC cells; thus, we propose that the increased production and secretion of sST2 likely sequesters IL-33 secreted by other cell types within the tumor environment, thus blocking its stimulatory effects on infiltrating host immune cells. Depleting FAK, IL-33, or sST2 from SCC cells before implantation induced tumor regression in syngeneic mice, except when CD8+ T cells were co-depleted. Our data provide mechanistic insight into how FAK controls the tumor immune environment, namely, through a transcriptional regulatory network mediated by nuclear IL-33. Targeting this axis may boost antitumor immunity in patients.
Copyright © 2017 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

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Year:  2017        PMID: 29208683      PMCID: PMC6128400          DOI: 10.1126/scisignal.aan8355

Source DB:  PubMed          Journal:  Sci Signal        ISSN: 1945-0877            Impact factor:   8.192


  44 in total

1.  Open source clustering software.

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2.  IL-1 receptor accessory protein and ST2 comprise the IL-33 receptor complex.

Authors:  Alissa A Chackerian; Elizabeth R Oldham; Erin E Murphy; Jochen Schmitz; Stefan Pflanz; Robert A Kastelein
Journal:  J Immunol       Date:  2007-08-15       Impact factor: 5.422

3.  Brd4 coactivates transcriptional activation of NF-kappaB via specific binding to acetylated RelA.

Authors:  Bo Huang; Xiao-Dong Yang; Ming-Ming Zhou; Keiko Ozato; Lin-Feng Chen
Journal:  Mol Cell Biol       Date:  2008-12-22       Impact factor: 4.272

4.  Increased dosage and amplification of the focal adhesion kinase gene in human cancer cells.

Authors:  M Agochiya; V G Brunton; D W Owens; E K Parkinson; C Paraskeva; W N Keith; M C Frame
Journal:  Oncogene       Date:  1999-10-07       Impact factor: 9.867

5.  Upregulation of focal adhesion kinase (FAK) expression in ductal carcinoma in situ (DCIS) is an early event in breast tumorigenesis.

Authors:  Harry M Lightfoot; Amy Lark; Chad A Livasy; Dominic T Moore; David Cowan; Lynn Dressler; Rolf J Craven; William G Cance
Journal:  Breast Cancer Res Treat       Date:  2004-11       Impact factor: 4.872

6.  Wdr82 is a C-terminal domain-binding protein that recruits the Setd1A Histone H3-Lys4 methyltransferase complex to transcription start sites of transcribed human genes.

Authors:  Jeong-Heon Lee; David G Skalnik
Journal:  Mol Cell Biol       Date:  2007-11-12       Impact factor: 4.272

7.  Brd4 maintains constitutively active NF-κB in cancer cells by binding to acetylated RelA.

Authors:  Z Zou; B Huang; X Wu; H Zhang; J Qi; J Bradner; S Nair; L-F Chen
Journal:  Oncogene       Date:  2013-05-20       Impact factor: 9.867

8.  IL-33 promotes growth and liver metastasis of colorectal cancer in mice by remodeling the tumor microenvironment and inducing angiogenesis.

Authors:  Yu Zhang; Celestia Davis; Sapana Shah; Daniel Hughes; James C Ryan; Diego Altomare; Maria Marjorette O Peña
Journal:  Mol Carcinog       Date:  2016-04-27       Impact factor: 4.784

9.  A promiscuous biotin ligase fusion protein identifies proximal and interacting proteins in mammalian cells.

Authors:  Kyle J Roux; Dae In Kim; Manfred Raida; Brian Burke
Journal:  J Cell Biol       Date:  2012-03-12       Impact factor: 10.539

10.  The alarmin IL-33 promotes regulatory T-cell function in the intestine.

Authors:  Chris Schiering; Thomas Krausgruber; Agnieszka Chomka; Anja Fröhlich; Krista Adelmann; Elizabeth A Wohlfert; Johanna Pott; Thibault Griseri; Julia Bollrath; Ahmed N Hegazy; Oliver J Harrison; Benjamin M J Owens; Max Löhning; Yasmine Belkaid; Padraic G Fallon; Fiona Powrie
Journal:  Nature       Date:  2014-07-16       Impact factor: 49.962

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  26 in total

1.  The autophagy protein Ambra1 regulates gene expression by supporting novel transcriptional complexes.

Authors:  Christina Schoenherr; Adam Byron; Billie Griffith; Alexander Loftus; Jimi C Wills; Alison F Munro; Alex von Kriegsheim; Margaret C Frame
Journal:  J Biol Chem       Date:  2020-07-02       Impact factor: 5.157

Review 2.  Targeting FAK in anticancer combination therapies.

Authors:  John C Dawson; Alan Serrels; Dwayne G Stupack; David D Schlaepfer; Margaret C Frame
Journal:  Nat Rev Cancer       Date:  2021-03-17       Impact factor: 60.716

Review 3.  The tumour microenvironment in pancreatic cancer - clinical challenges and opportunities.

Authors:  Won Jin Ho; Elizabeth M Jaffee; Lei Zheng
Journal:  Nat Rev Clin Oncol       Date:  2020-05-12       Impact factor: 66.675

4.  Matrix bound nanovesicle-associated IL-33 activates a pro-remodeling macrophage phenotype via a non-canonical, ST2-independent pathway.

Authors:  George S Hussey; Jenna L Dziki; Yoojin C Lee; Joseph G Bartolacci; Marissa Behun; Hēth R Turnquist; Stephen F Badylak
Journal:  J Immunol Regen Med       Date:  2019-02-01

5.  Epigenome-wide association study and network analysis for IgA Nephropathy from CD19+ B-cell in Chinese Population.

Authors:  Yifei Lin; Peiran Yin; Zhaozhong Zhu; Yuan Peng; Ming Li; Jun Li; Liming Liang; Xueqing Yu
Journal:  Epigenetics       Date:  2021-01-07       Impact factor: 4.528

6.  FAK signaling in cancer-associated fibroblasts promotes breast cancer cell migration and metastasis by exosomal miRNAs-mediated intercellular communication.

Authors:  Hsin-Jung Wu; Mingang Hao; Syn Kok Yeo; Jun-Lin Guan
Journal:  Oncogene       Date:  2020-01-27       Impact factor: 9.867

7.  Plasma levels of interleukin-33 and soluble suppression of tumorigenicity 2 in patients with advanced pancreatic ductal adenocarcinoma undergoing systemic chemotherapy.

Authors:  Markus Kieler; Matthias Unseld; Johann Wojta; Alexandra Kaider; Daniela Bianconi; Svitlana Demyanets; Gerald W Prager
Journal:  Med Oncol       Date:  2018-11-13       Impact factor: 3.064

Review 8.  The roles of nuclear focal adhesion kinase (FAK) on Cancer: a focused review.

Authors:  Jin Zhou; Qian Yi; Liling Tang
Journal:  J Exp Clin Cancer Res       Date:  2019-06-11

9.  Precision Therapy for Mesothelioma: Feasibility and New Opportunities.

Authors:  Sean Dulloo; Aleksandra Bzura; Dean Anthony Fennell
Journal:  Cancers (Basel)       Date:  2021-05-13       Impact factor: 6.639

Review 10.  The Role of IL-33/ST2 Pathway in Tumorigenesis.

Authors:  Kristen M Larsen; Maydelis Karla Minaya; Vivek Vaish; Maria Marjorette O Peña
Journal:  Int J Mol Sci       Date:  2018-09-09       Impact factor: 5.923

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