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灭火:SOCS1和SOCS3蛋白对先天性和适应性免疫系统的协同抑制

Putting out the fire: coordinated suppression of the innate and adaptive immune systems by SOCS1 and SOCS3 proteins.

作者信息

Dimitriou Ioannis D, Clemenza Liliana, Scotter Andrew J, Chen Grace, Guerra Fiona M, Rottapel Robert

机构信息

Ontario Cancer Institute/Toronto Medical Discovery Tower, Toronto, Canada.

出版信息

Immunol Rev. 2008 Aug;224:265-83. doi: 10.1111/j.1600-065X.2008.00659.x.

Abstract

The mounting of an effective immune response requires the coordinated function of both the innate and the adaptive arm of the immune system. Cells from both types of immunity respond to antigenic stimuli through a variety of surface and intracellular receptors and produce cytokines that tightly orchestrate the inflammatory response. The operation of feedback control mechanisms that regulate the duration and the amplitude of antigenic and cytokine receptor signaling is therefore required to prevent hyper-activation of the immune system that could lead to tissue destruction or autoimmunity. Suppressor of cytokine signaling (SOCS) proteins have been identified as a negative feedback loop to cytokine signaling. Recently, the generation of genetically engineered mouse models permitted the evaluation of their function in different processes of the immune responses. In this article, we review new insights into the modular structure of SOCS proteins and the function of SOCS1 and SOCS3 to negatively regulate activation and/or differentiation pathways in macrophages, dendritic cells, and T lymphocytes. Thus, SOCS family proteins are components of an emerging immunoregulatory mechanism that maintains the coordinated balance of both innate and adaptive immune responses.

摘要

有效的免疫反应的产生需要免疫系统的固有免疫和适应性免疫分支的协同作用。两种免疫类型的细胞通过多种表面受体和细胞内受体对抗抗原刺激,并产生紧密协调炎症反应的细胞因子。因此,需要调节抗原和细胞因子受体信号传导的持续时间和幅度的反馈控制机制来防止免疫系统过度激活,否则可能导致组织破坏或自身免疫。细胞因子信号传导抑制因子(SOCS)蛋白已被确定为细胞因子信号传导的负反馈环。最近,基因工程小鼠模型的产生使得能够评估它们在免疫反应不同过程中的功能。在本文中,我们综述了关于SOCS蛋白模块化结构以及SOCS1和SOCS3在巨噬细胞、树突状细胞和T淋巴细胞中负调节激活和/或分化途径功能的新见解。因此,SOCS家族蛋白是一种新兴免疫调节机制的组成部分,该机制维持固有免疫和适应性免疫反应的协调平衡。

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