Comerford Iain, Milasta Sandra, Morrow Valerie, Milligan Graeme, Nibbs Robert
Division of Immunology, Infection and Inflammation, Glasgow University, Glasgow, UK.
Eur J Immunol. 2006 Jul;36(7):1904-16. doi: 10.1002/eji.200535716.
The chemokines CCL19, CCL21 and CCL25, by signalling through the receptors CCR7 or CCR9, play critical roles in leukocyte homing. They also bind another heptahelical surface protein, CCX-CKR. CCX-CKR cannot couple to typical chemokine receptor signalling pathways or mediate chemotaxis, and its function remains unclear. We have proposed that it controls chemokine bioavailability. Here, using transfected HEK293 cells, we have shown that both CCX-CKR and CCR7 mediate rapid CCL19 internalisation upon initial chemokine exposure. However, internalised CCL19 was more efficiently retained and degraded after uptake via CCX-CKR. More importantly, CCR7 rapidly became refractory for CCL19 uptake, but the sequestration activity of CCX-CKR was enhanced. These properties endowed CCX-CKR with an impressive ability to mediate progressive sequestration and degradation of large quantities of CCL19, and conversely, prevented CCR7-expressing cells from extensively altering their chemokine environment. These differences may be linked to the routes of endocytosis used by these receptors. CCX-CKR, unlike CCR7, was not critically dependent on beta-arrestins or clathrin-coated pits. However, over-expression of caveolin-1, which stabilises caveolae, blocked CCL19 uptake by CCX-CKR while having no impact on other chemokine receptors, including CCR7. These data predict that CCX-CKR scavenges extracellular chemokines in vivo to modify responses through CCR7.
趋化因子CCL19、CCL21和CCL25通过与受体CCR7或CCR9信号传导,在白细胞归巢中发挥关键作用。它们还与另一种七螺旋表面蛋白CCX-CKR结合。CCX-CKR不能与典型的趋化因子受体信号通路偶联或介导趋化作用,其功能仍不清楚。我们提出它控制趋化因子的生物利用度。在这里,使用转染的HEK293细胞,我们已经表明,CCX-CKR和CCR7在最初接触趋化因子后都介导CCL19的快速内化。然而,内化的CCL19在通过CCX-CKR摄取后更有效地被保留和降解。更重要的是,CCR7对CCL19摄取迅速变得不应性,但CCX-CKR的螯合活性增强。这些特性赋予CCX-CKR介导大量CCL19进行性螯合和降解的惊人能力,相反,阻止表达CCR7的细胞广泛改变其趋化因子环境。这些差异可能与这些受体使用的内吞途径有关。与CCR7不同,CCX-CKR并不严重依赖β-抑制蛋白或网格蛋白包被小窝。然而,稳定小窝的小窝蛋白-1的过表达阻断了CCX-CKR对CCL19的摄取,而对包括CCR7在内的其他趋化因子受体没有影响。这些数据预测CCX-CKR在体内清除细胞外趋化因子以改变通过CCR7的反应。