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CD40与II型干扰素的协同作用对I型干扰素合成的体内和体外调节

In vivo and in vitro regulation of type I IFN synthesis by synergistic effects of CD40 and type II IFN.

作者信息

Greene Jennifer A, DeVecchio Jennifer L, Gould Meetha P, Auletta Jeffery J, Heinzel Frederick P

机构信息

Center for Global Health and Diseases, Case Western Reserve University, Wolstein 4131, Cleveland, OH 44106, USA.

出版信息

J Immunol. 2006 May 15;176(10):5995-6003. doi: 10.4049/jimmunol.176.10.5995.

Abstract

During cognate interaction with CD40 ligand (CD154)-expressing T cells, Ag-presenting accessory cells are activated for increased cytokine synthetic and costimulatory function. We examined whether CD40 modulates in vivo innate immune function over time, hypothesizing that distinct cytokine responses evolve to delayed microbial exposure. C3H/HeN mice pretreated with activating anti-CD40 Ab (FGK45) produced 10-fold more serum IFN-gamma and IL-12 p70 to delayed, but not synchronous, challenge with LPS. A novel finding was that LPS-induced IFN-alpha increased by 20-fold in mice pretreated for 24 h, but not 6 h or less, with anti-CD40. Anti-CD40-pretreated C57BL/6 RAG-2(-/-) mice similarly increased IFN-alpha responses to delayed LPS challenge, confirming mediation by innate immunity. Type I IFNR- and IFN-gamma-deficient mice treated with anti-CD40 failed to expand serum IFN-alpha responses to LPS challenge. Combined pretreatment with anti-CD40 and anti-IFN-gamma mAb showed that IFN-gamma produced after anti-CD40 pretreatment, but before LPS challenge, was necessary for IFN-alpha synthetic enhancement. Anti-CD40 also increased polyinosinic-polycytidylic acid (poly(I:C))-inducible IFN-alpha by 5-fold in an IFN-gamma-dependent fashion, but did not significantly increase IFN-alpha production to CpG or Pam(3)Cys challenges. Poly(IC)-stimulated splenocytes from anti-CD40-pretreated mice produced 4-fold more IFN-alpha than controls and production associated with CD11c(+) cells. Finally, rIFN-gamma and anti-CD40 combined synergistically to increase poly(IC)-inducible IFN-alpha synthetic capacity in bone marrow dendritic cells. We conclude that innate immune production of IFN-alpha is cooperatively regulated by CD40 and IFN-gamma acting on dendritic cells, suggesting a unique mechanism by which innate immune function evolves in response to specific adaptive immune signals.

摘要

在与表达CD40配体(CD154)的T细胞进行同源相互作用期间,抗原呈递辅助细胞被激活,从而增强细胞因子合成和共刺激功能。我们研究了CD40是否随时间调节体内天然免疫功能,推测不同的细胞因子反应会演变为对延迟微生物暴露的反应。用活化抗CD40抗体(FGK45)预处理的C3H/HeN小鼠,在受到LPS延迟攻击(而非同步攻击)时,血清IFN-γ和IL-12 p70的产生量增加了10倍。一个新发现是,用抗CD40预处理24小时(而非6小时或更短时间)的小鼠,LPS诱导的IFN-α增加了20倍。抗CD40预处理的C57BL/6 RAG-2(-/-)小鼠对LPS延迟攻击的IFN-α反应同样增加,证实了由天然免疫介导。用抗CD40处理的I型IFNR和IFN-γ缺陷小鼠未能扩大对LPS攻击的血清IFN-α反应。抗CD40和抗IFN-γ单克隆抗体联合预处理表明,抗CD40预处理后、LPS攻击前产生的IFN-γ是IFN-α合成增强所必需的。抗CD40还以IFN-γ依赖的方式使聚肌苷酸-聚胞苷酸(poly(I:C))诱导的IFN-α增加了5倍,但对CpG或Pam(3)Cys攻击未显著增加IFN-α产生。来自抗CD40预处理小鼠的poly(IC)刺激的脾细胞产生的IFN-α比对照多4倍,且产生与CD11c(+)细胞相关。最后,重组IFN-γ和抗CD40协同作用,增加骨髓树突状细胞中poly(IC)诱导的IFN-α合成能力。我们得出结论,IFN-α的天然免疫产生由作用于树突状细胞的CD40和IFN-γ协同调节,提示了一种独特的机制,通过该机制天然免疫功能可响应特定的适应性免疫信号而演变。

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