Preferential control of induced regulatory T cell homeostasis via a Bim/Bcl-2 axis

被引:0
作者
X Wang
A L Szymczak-Workman
D M Gravano
C J Workman
D R Green
D A A Vignali
机构
[1] St. Jude Children's Research Hospital,Department of Immunology
[2] 3Current address: Department of Cell Biology,undefined
[3] Albert Einstein College of Medicine,undefined
[4] Bronx,undefined
[5] NY 10461,undefined
[6] USA,undefined
来源
Cell Death & Disease | 2012年 / 3卷
关键词
iTreg; apoptosis; Bim; Bcl-2;
D O I
暂无
中图分类号
学科分类号
摘要
Apoptosis has an essential role in controlling T cell homeostasis, especially during the contraction phase of an immune response. However, its contribution to the balance between effector and regulatory populations remains unclear. We found that Rag1−/− hosts repopulated with Bim−/− conventional CD4+ T cells (Tconv) resulted in a larger induced regulatory T cell (iTreg) population than mice given wild-type (WT) Tconv. This appears to be due to an increased survival advantage of iTregs compared with activated Tconv in the absence of Bim. Downregulation of Bcl-2 expression and upregulation of Bim expression were more dramatic in WT iTregs than activated Tconv in the absence of IL-2 in vitro. The iTregs generated following Tconv reconstitution of Rag1−/− hosts exhibited lower Bcl-2 expression and higher Bim/Bcl-2 ratio than Tconv, which indicates that iTregs were in an apoptosis-prone state in vivo. A significant proportion of the peripheral iTreg pool exhibits low Bcl-2 expression indicating increased sensitivity to apoptosis, which may be a general characteristic of certain Treg subpopulations. In summary, our data suggest that iTregs and Tconv differ in their sensitivity to apoptotic stimuli due to their altered ratio of Bim/Bcl-2 expression. Modulating the apoptosis pathway may provide novel therapeutic approaches to alter the balance between effector T cells and Tregs.
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页码:e270 / e270
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共 167 条
[1]  
Sakaguchi S(2008)Regulatory T cells and immune tolerance Cell 133 775-787
[2]  
Yamaguchi T(2005)A function for interleukin 2 in Foxp3-expressing regulatory T cells Nat Immunol 6 1142-1151
[3]  
Nomura T(2005)In contrast to effector T cells, CD4+CD25+FoxP3+ regulatory T cells are highly susceptible to CD95 ligand- but not to TCR-mediated cell death J Immunol 175 32-36
[4]  
Ono M(2010)The pathogen recognition receptor NOD2 regulates human FOXP3+ T cell survival J Immunol 184 7247-7256
[5]  
Fontenot JD(2010)CD4(+)CD25(+) regulatory T cells resist a novel form of CD28- and Fas-dependent p53-induced T cell apoptosis J Immunol 184 94-104
[6]  
Rasmussen JP(2002)Activated T cell death Immunity 16 759-767
[7]  
Gavin MA(2008) mediated by proapoptotic bcl-2 family member bim Immunity 28 197-205
[8]  
Rudensky AY(2008)Apoptosis regulators Fas and Bim cooperate in shutdown of chronic immune responses and prevention of autoimmunity Immunity 28 206-217
[9]  
Fritzsching B(2008)Combined deficiency of proapoptotic regulators Bim and Fas results in the early onset of systemic autoimmunity Immunity 28 218-230
[10]  
Oberle N(2005)Apoptosis regulators Bim and Fas function concurrently to control autoimmunity and CD8+ T cell contraction Curr Opin Cell Biol 17 617-625