Literature DB >> 23277487

TNFR2 is critical for the stabilization of the CD4+Foxp3+ regulatory T. cell phenotype in the inflammatory environment.

Xin Chen1, Xueqiang Wu, Qiong Zhou, O M Zack Howard, Mihai G Netea, Joost J Oppenheim.   

Abstract

Several lines of evidence indicate the instability of CD4(+)Foxp3(+) regulatory T cells (Tregs). We have therefore investigated means of promoting the stability of Tregs. In this study, we found that the proportion of Tregs in mouse strains deficient in TNFR2 or its ligands was reduced in the thymus and peripheral lymphoid tissues, suggesting a potential role of TNFR2 in promoting the sustained expression of Foxp3. We observed that upon in vitro activation with plate-bound anti-CD3 Ab and soluble anti-CD28 Ab, Foxp3 expression by highly purified mouse Tregs was markedly downregulated. Importantly, TNF partially abrogated this effect of TCR stimulation and stabilized Foxp3 expression. This effect of TNF was blocked by anti-TNFR2 Ab, but not by anti-TNFR1 Ab. Furthermore, TNF was not able to maintain Foxp3 expression by TNFR2-deficient Tregs. In a mouse colitis model induced by transfer of naive CD4 cells into Rag1(-/-) mice, the disease could be inhibited by cotransfer of wild-type Tregs, but not by cotransfer of TNFR2-deficient Tregs. Furthermore, in the lamina propria of the colitis model, most wild-type Tregs maintained Foxp3 expression. In contrast, an increased number of TNFR2-deficient Tregs lost Foxp3 expression. Thus, our data clearly show that TNFR2 is critical for the phenotypic and functional stability of Tregs in the inflammatory environment. This effect of TNF should be taken into account when designing future therapy of autoimmunity and graft-versus-host disease by using TNF inhibitors.

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Year:  2012        PMID: 23277487      PMCID: PMC3552130          DOI: 10.4049/jimmunol.1202659

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  46 in total

Review 1.  Developmental plasticity of Foxp3+ regulatory T cells.

Authors:  Shohei Hori
Journal:  Curr Opin Immunol       Date:  2010-09-09       Impact factor: 7.486

2.  Expression of costimulatory TNFR2 induces resistance of CD4+FoxP3- conventional T cells to suppression by CD4+FoxP3+ regulatory T cells.

Authors:  Xin Chen; Ryoko Hamano; Jeffrey J Subleski; Arthur A Hurwitz; O M Zack Howard; Joost J Oppenheim
Journal:  J Immunol       Date:  2010-06-04       Impact factor: 5.422

3.  TNF regulates thymocyte production by apoptosis and proliferation of the triple negative (CD3-CD4-CD8-) subset.

Authors:  J G Baseta; O Stutman
Journal:  J Immunol       Date:  2000-11-15       Impact factor: 5.422

4.  Foxp3 programs the development and function of CD4+CD25+ regulatory T cells.

Authors:  Jason D Fontenot; Marc A Gavin; Alexander Y Rudensky
Journal:  Nat Immunol       Date:  2003-03-03       Impact factor: 25.606

5.  Cutting edge: expression of TNFR2 defines a maximally suppressive subset of mouse CD4+CD25+FoxP3+ T regulatory cells: applicability to tumor-infiltrating T regulatory cells.

Authors:  Xin Chen; Jeffrey J Subleski; Heather Kopf; O M Zack Howard; Daniela N Männel; Joost J Oppenheim
Journal:  J Immunol       Date:  2008-05-15       Impact factor: 5.422

6.  Cutting edge: TNFR-shedding by CD4+CD25+ regulatory T cells inhibits the induction of inflammatory mediators.

Authors:  Geertje J D van Mierlo; Hans U Scherer; Marjolijn Hameetman; Mary E Morgan; Roelof Flierman; Tom W J Huizinga; René E M Toes
Journal:  J Immunol       Date:  2008-03-01       Impact factor: 5.422

7.  Redundancy in tumor necrosis factor (TNF) and lymphotoxin (LT) signaling in vivo: mice with inactivation of the entire TNF/LT locus versus single-knockout mice.

Authors:  Dmitry V Kuprash; Marat B Alimzhanov; Alexei V Tumanov; Sergei I Grivennikov; Alexander N Shakhov; Ludmila N Drutskaya; Michael W Marino; Regina L Turetskaya; Arthur O Anderson; Klaus Rajewsky; Klaus Pfeffer; Sergei A Nedospasov
Journal:  Mol Cell Biol       Date:  2002-12       Impact factor: 4.272

8.  IL-2 family of cytokines in T regulatory cell development and homeostasis.

Authors:  Thomas R Malek; Aixin Yu; Linjian Zhu; Takaji Matsutani; Dennis Adeegbe; Allison L Bayer
Journal:  J Clin Immunol       Date:  2008-08-26       Impact factor: 8.317

Review 9.  Regulatory T cells and Foxp3.

Authors:  Alexander Y Rudensky
Journal:  Immunol Rev       Date:  2011-05       Impact factor: 12.988

10.  Conversion of peripheral CD4+CD25- naive T cells to CD4+CD25+ regulatory T cells by TGF-beta induction of transcription factor Foxp3.

Authors:  WanJun Chen; Wenwen Jin; Neil Hardegen; Ke-Jian Lei; Li Li; Nancy Marinos; George McGrady; Sharon M Wahl
Journal:  J Exp Med       Date:  2003-12-15       Impact factor: 14.307

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  114 in total

1.  Exogenous activation of tumor necrosis factor receptor 2 promotes recovery from sensory and motor disease in a model of multiple sclerosis.

Authors:  Roman Fischer; Tanja Padutsch; Valerie Bracchi-Ricard; Kayla L Murphy; George F Martinez; Niky Delguercio; Nicholas Elmer; Maksim Sendetski; Ricarda Diem; Ulrich L M Eisel; Richard J Smeyne; Roland E Kontermann; Klaus Pfizenmaier; John R Bethea
Journal:  Brain Behav Immun       Date:  2019-06-17       Impact factor: 7.217

2.  Activated human Foxp3+ regulatory T cells produce membrane-bound TNF.

Authors:  Alexander Nelson; Christina Cunha; Michael I Nishimura; Makio Iwashima
Journal:  Cytokine       Date:  2018-06-06       Impact factor: 3.861

Review 3.  Th17 cells and Tregs: unlikely allies.

Authors:  Xin Chen; Joost J Oppenheim
Journal:  J Leukoc Biol       Date:  2014-02-21       Impact factor: 4.962

4.  TNFR2 limits proinflammatory astrocyte functions during EAE induced by pathogenic DR2b-restricted T cells.

Authors:  Itay Raphael; Francisco Gomez-Rivera; Rebecca A Raphael; Rachel R Robinson; Saisha Nalawade; Thomas G Forsthuber
Journal:  JCI Insight       Date:  2019-12-19

Review 5.  Beyond TNF: TNF superfamily cytokines as targets for the treatment of rheumatic diseases.

Authors:  Michael Croft; Richard M Siegel
Journal:  Nat Rev Rheumatol       Date:  2017-03-09       Impact factor: 20.543

Review 6.  Immunomodulation of autoimmune arthritis by pro-inflammatory cytokines.

Authors:  Eugene Y Kim; Kamal D Moudgil
Journal:  Cytokine       Date:  2017-04-25       Impact factor: 3.861

7.  TNF/TNFR axis promotes pyrin inflammasome activation and distinctly modulates pyrin inflammasomopathy.

Authors:  Deepika Sharma; Ankit Malik; Clifford Guy; Peter Vogel; Thirumala-Devi Kanneganti
Journal:  J Clin Invest       Date:  2018-11-19       Impact factor: 14.808

Review 8.  The TNF Receptor Superfamily in Co-stimulating and Co-inhibitory Responses.

Authors:  Lindsay K Ward-Kavanagh; Wai Wai Lin; John R Šedý; Carl F Ware
Journal:  Immunity       Date:  2016-05-17       Impact factor: 31.745

9.  Activated CD8+ T cells induce expansion of Vβ5+ regulatory T cells via TNFR2 signaling.

Authors:  Jara J Joedicke; Lara Myers; Aaron B Carmody; Ronald J Messer; Harald Wajant; Karl S Lang; Philipp A Lang; Tak W Mak; Kim J Hasenkrug; Ulf Dittmer
Journal:  J Immunol       Date:  2014-08-06       Impact factor: 5.422

10.  Stimulation of TNF receptor type 2 expands regulatory T cells and ameliorates established collagen-induced arthritis in mice.

Authors:  Vanessa Lamontain; Tobias Schmid; Dorothea Weber-Steffens; David Zeller; Zsuzsa Jenei-Lanzl; Harald Wajant; Rainer H Straub; Daniela N Männel
Journal:  Cell Mol Immunol       Date:  2018-01-29       Impact factor: 11.530

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