Literature DB >> 19052080

MyD88 intrinsically regulates CD4 T-cell responses.

Shenghua Zhou1, Evelyn A Kurt-Jones, Anna M Cerny, Melvin Chan, Roderick Terry Bronson, Robert W Finberg.   

Abstract

Myeloid differentiation factor 88 (MyD88) is an essential adaptor protein in the Toll-like receptor-mediated innate signaling pathway, as well as in interleukin-1 receptor (IL-1R) and IL-18R signaling. The importance of MyD88 in the regulation of innate immunity to microbial pathogens has been well demonstrated. However, its role in regulating acquired immunity to viral pathogens and neuropathogenesis is not entirely clear. In the present study, we examine the role of MyD88 in the CD4(+) T-cell response following lymphocytic choriomeningitis virus (LCMV) infection. We demonstrate that wild-type (WT) mice developed a CD4(+) T-cell-mediated wasting disease after intracranial infection with LCMV. In contrast, MyD88 knockout (KO) mice did not develop wasting disease in response to the same infection. This effect was not the result of MyD88 regulation of IL-1 or IL-18 responses since IL-1R1 KO and IL-18R KO mice were not protected from weight loss. In the absence of MyD88, naïve CD4(+) T cells failed to differentiate to LCMV-specific CD4 T cells. We demonstrated that MyD88 KO antigen-presenting cells are capable of activating WT CD4(+) T cells. Importantly, when MyD88 KO CD4(+) T cells were reconstituted with an MyD88-expressing lentivirus, the rescued CD4(+) T cells were able to respond to LCMV infection and support IgG2a antibody production. Overall, these studies reveal a previously unknown role of MyD88-dependent signaling in CD4(+) T cells in the regulation of the virus-specific CD4(+) T-cell response and in viral infection-induced immunopathology in the central nervous system.

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Year:  2008        PMID: 19052080      PMCID: PMC2643758          DOI: 10.1128/JVI.01770-08

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  51 in total

Review 1.  Biology and pathogenesis of lymphocytic choriomeningitis virus infection.

Authors:  M B A Oldstone
Journal:  Curr Top Microbiol Immunol       Date:  2002       Impact factor: 4.291

Review 2.  Toll-like receptors and innate immunity.

Authors:  R Medzhitov
Journal:  Nat Rev Immunol       Date:  2001-11       Impact factor: 53.106

Review 3.  MyD88 as a bottle neck in Toll/IL-1 signaling.

Authors:  O Takeuchi; S Akira
Journal:  Curr Top Microbiol Immunol       Date:  2002       Impact factor: 4.291

4.  Toll pathway-dependent blockade of CD4+CD25+ T cell-mediated suppression by dendritic cells.

Authors:  Chandrashekhar Pasare; Ruslan Medzhitov
Journal:  Science       Date:  2003-01-16       Impact factor: 47.728

Review 5.  Mammalian Toll-like receptors.

Authors:  Shizuo Akira
Journal:  Curr Opin Immunol       Date:  2003-02       Impact factor: 7.486

Review 6.  Similarities and differences in CD4+ and CD8+ effector and memory T cell generation.

Authors:  Robert A Seder; Rafi Ahmed
Journal:  Nat Immunol       Date:  2003-09       Impact factor: 25.606

7.  Critical role for alpha/beta and gamma interferons in persistence of lymphocytic choriomeningitis virus by clonal exhaustion of cytotoxic T cells.

Authors:  R Ou; S Zhou; L Huang; D Moskophidis
Journal:  J Virol       Date:  2001-09       Impact factor: 5.103

8.  High frequency of virus-specific interleukin-2-producing CD4(+) T cells and Th1 dominance during lymphocytic choriomeningitis virus infection.

Authors:  S M Varga; R M Welsh
Journal:  J Virol       Date:  2000-05       Impact factor: 5.103

9.  Herpes simplex virus 1 interaction with Toll-like receptor 2 contributes to lethal encephalitis.

Authors:  Evelyn A Kurt-Jones; Melvin Chan; Shenghua Zhou; Jennifer Wang; George Reed; Roderick Bronson; Michelle M Arnold; David M Knipe; Robert W Finberg
Journal:  Proc Natl Acad Sci U S A       Date:  2004-01-22       Impact factor: 11.205

10.  The role of proinflammatory cytokines in wasting disease during lymphocytic choriomeningitis virus infection.

Authors:  Cris Kamperschroer; Daniel G Quinn
Journal:  J Immunol       Date:  2002-07-01       Impact factor: 5.422

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  33 in total

1.  An intermediate dose of LCMV clone 13 causes prolonged morbidity that is maintained by CD4+ T cells.

Authors:  Andrew Stamm; Laura Valentine; Rashaun Potts; Mary Premenko-Lanier
Journal:  Virology       Date:  2012-02-04       Impact factor: 3.616

2.  Pathogenic Old World arenaviruses inhibit TLR2/Mal-dependent proinflammatory cytokines in vitro.

Authors:  Melissa W Hayes; Ricardo Carrion; Jerritt Nunneley; Andrei E Medvedev; Maria S Salvato; Igor S Lukashevich
Journal:  J Virol       Date:  2012-04-24       Impact factor: 5.103

3.  MyD88 in antigen-presenting cells is not required for CD4+ T-cell responses during peptide nanofiber vaccination.

Authors:  Youhui Si; Yi Wen; Jianjun Chen; Rebecca R Pompano; Huifang Han; Joel Collier; Anita S Chong
Journal:  Medchemcomm       Date:  2017-11-29       Impact factor: 3.597

4.  MyD88-dependent immunity to a natural model of vaccinia virus infection does not involve Toll-like receptor 2.

Authors:  Michael L Davies; Janet J Sei; Nicholas A Siciliano; Ren-Huan Xu; Felicia Roscoe; Luis J Sigal; Laurence C Eisenlohr; Christopher C Norbury
Journal:  J Virol       Date:  2014-01-08       Impact factor: 5.103

5.  Role of interferon regulatory factor 7 in T cell responses during acute lymphocytic choriomeningitis virus infection.

Authors:  Shenghua Zhou; Anna M Cerny; Katherine A Fitzgerald; Evelyn A Kurt-Jones; Robert W Finberg
Journal:  J Virol       Date:  2012-08-08       Impact factor: 5.103

6.  ST2/MyD88 Deficiency Protects Mice against Acute Graft-versus-Host Disease and Spares Regulatory T Cells.

Authors:  Brad Griesenauer; Hua Jiang; Jinfeng Yang; Jilu Zhang; Abdulraouf M Ramadan; Jane Egbosiuba; Khaled Campa; Sophie Paczesny
Journal:  J Immunol       Date:  2019-04-12       Impact factor: 5.422

7.  Recipient Myd88 Deficiency Promotes Spontaneous Resolution of Kidney Allograft Rejection.

Authors:  Nadine M Lerret; Ting Li; Jiao-Jing Wang; Hee-Kap Kang; Sheng Wang; Xueqiong Wang; Chunfa Jie; Yashpal S Kanwar; Michael M Abecassis; Xunrong Luo; Zheng Zhang
Journal:  J Am Soc Nephrol       Date:  2015-03-18       Impact factor: 10.121

8.  Expression and function of a novel isoform of Sox5 in malignant B cells.

Authors:  Shanique K E Edwards; Anand Desai; Yan Liu; Carissa R Moore; Ping Xie
Journal:  Leuk Res       Date:  2013-12-25       Impact factor: 3.156

9.  MyD88 signaling in CD4 T cells promotes IFN-γ production and hematopoietic progenitor cell expansion in response to intracellular bacterial infection.

Authors:  Yubin Zhang; Maura Jones; Amanda McCabe; Gary M Winslow; Dorina Avram; Katherine C MacNamara
Journal:  J Immunol       Date:  2013-03-22       Impact factor: 5.422

10.  Signaling mechanisms of bortezomib in TRAF3-deficient mouse B lymphoma and human multiple myeloma cells.

Authors:  Shanique K E Edwards; Yeming Han; Yingying Liu; Benjamin Z Kreider; Yan Liu; Sukhdeep Grewal; Anand Desai; Jacqueline Baron; Carissa R Moore; Chang Luo; Ping Xie
Journal:  Leuk Res       Date:  2015-12-19       Impact factor: 3.156

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