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环氧化酶调节人CD4 + T细胞中CXCR3/1储存颗粒的细胞表面表达。

Cyclooxygenase regulates cell surface expression of CXCR3/1-storing granules in human CD4+ T cells.

作者信息

Gasser Olivier, Schmid Thomas A, Zenhaeusern Gabriela, Hess Christoph

机构信息

Immunobiology Laboratory, Department of Research, University Hospital, University of Basel, Basel, Switzerland.

出版信息

J Immunol. 2006 Dec 15;177(12):8806-12. doi: 10.4049/jimmunol.177.12.8806.

Abstract

Efficient migration of CD4+ T cells into sites of infection/inflammation is a prerequisite to protective immunity. Inappropriate recruitment, on the other hand, contributes to inflammatory pathologies. The chemokine/chemokine receptor system is thought to orchestrate T cell homing. In this study, we show that most circulating human CD4+ T cells store the inflammatory chemokine receptors CXCR3 and CXCR1 within a distinct intracellular compartment. Equipped with such storage granules, CD4+ T cells coexpressing both receptors increased from only 1% ex vivo to approximately 30% within minutes of activation with PHA or exposure to the cyclooxygenase (COX) substrate arachidonic acid. Up-regulation was TCR independent and reduced by COX inhibitors at concentrations readily reached in vivo. The inducible inflammatory CXCR3(high)CXCR1+ phenotype identified nonpolarized cells, was preferentially triggered on CCR7+CD4+ T cells, and conferred increased chemotactic responsiveness. Thus, inducible CXCR3/1 expression occurs in a large fraction of CD4+ T cells. Its dependency on COX may explain a number of established, and point toward novel, effects of COX inhibitors.

摘要

CD4+ T细胞有效迁移至感染/炎症部位是保护性免疫的前提条件。另一方面,不适当的募集会导致炎症性病变。趋化因子/趋化因子受体系统被认为在协调T细胞归巢过程中发挥作用。在本研究中,我们发现大多数循环中的人类CD4+ T细胞在一个独特的细胞内区室中储存炎症趋化因子受体CXCR3和CXCR1。配备有这种储存颗粒的同时表达这两种受体的CD4+ T细胞,在经PHA激活或暴露于环氧化酶(COX)底物花生四烯酸后几分钟内,从体外的仅1%增加至约30%。这种上调不依赖TCR,且在体内易于达到的浓度下可被COX抑制剂所抑制。可诱导的炎症性CXCR3(高)CXCR1+表型识别出非极化细胞,优先在CCR7+CD4+ T细胞上触发,并赋予增强的趋化反应性。因此,可诱导的CXCR3/1表达在大部分CD4+ T细胞中发生。其对COX的依赖性可能解释了COX抑制剂的一些已确定的效应,并指向新的效应。

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