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补体的局部产生和激活通过C3a-C3aR相互作用上调树突状细胞的共刺激功能。

Local production and activation of complement up-regulates the allostimulatory function of dendritic cells through C3a-C3aR interaction.

作者信息

Peng Qi, Li Ke, Anderson Katie, Farrar Conrad A, Lu Bao, Smith Richard A G, Sacks Steven H, Zhou Wuding

机构信息

Medical Research Council Centre for Transplantation, Department of Nephrology and Transplantation, King's College London, London, United Kingdom.

出版信息

Blood. 2008 Feb 15;111(4):2452-61. doi: 10.1182/blood-2007-06-095018. Epub 2007 Dec 4.

Abstract

Donor cell expression of C3 enhances the alloimmune response and is associated with the fate of transplantation. To clarify the mechanism for enhancement of the immune response, we have explored the role of C3a receptor (C3aR)-ligand interaction on murine bone marrow dendritic cells (DCs). We show that DCs either lacked receptor for C3a (a C3 cleavage product) or were treated with C3aR antagonist, elicited defective T-cell priming against alloantigen expressed on the DCs. This was associated with reduced surface expression of major histocompatibility complex (MHC) and costimulatory molecules on the DCs, and with defective priming in skin allograft rejection. In addition, DCs lacking factor B were unable to generate potent T-cell responses against donor antigen, whereas lack of C4 had no detectable effect, suggesting a role for the alternative pathway contributing to allostimulation. Furthermore, therapeutic complement regulator can down-regulate DC allostimulatory function. These findings suggest that the capacity of DCs for allostimulation depends on their ability to express, activate, and detect relevant complement components leading to C3aR signaling. This mechanism, in addition to underpinning the cell-autonomous action of donor C3 on allostimulation, has implications for a wider range of immune responses in self-restricted T-cell priming.

摘要

供体细胞中C3的表达增强了同种免疫反应,并与移植的命运相关。为了阐明免疫反应增强的机制,我们探讨了C3a受体(C3aR)-配体相互作用对小鼠骨髓树突状细胞(DCs)的作用。我们发现,DCs要么缺乏C3a(一种C3裂解产物)的受体,要么用C3aR拮抗剂处理,从而引发针对DCs上表达的同种抗原的T细胞启动缺陷。这与DCs上主要组织相容性复合体(MHC)和共刺激分子的表面表达减少有关,并且与皮肤同种异体移植排斥反应中的启动缺陷有关。此外,缺乏因子B的DCs无法产生针对供体抗原的有效T细胞反应,而缺乏C4则没有可检测到的影响,这表明替代途径在同种异体刺激中发挥作用。此外,治疗性补体调节剂可以下调DC的同种异体刺激功能。这些发现表明,DCs的同种异体刺激能力取决于它们表达、激活和检测导致C3aR信号传导的相关补体成分的能力。这种机制除了支持供体C3在同种异体刺激中的细胞自主作用外,还对自身限制性T细胞启动中更广泛的免疫反应具有影响。

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