首页> 外文期刊>The Journal of biological chemistry >Induction of C-X-C Chemokine Receptor Type 7 (CXCR7) Switches Stromal Cell-derived Factor-1 (SDF-1) Signaling and Phagocytic Activity in Macrophages Linked to Atherosclerosis
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Induction of C-X-C Chemokine Receptor Type 7 (CXCR7) Switches Stromal Cell-derived Factor-1 (SDF-1) Signaling and Phagocytic Activity in Macrophages Linked to Atherosclerosis

机译:诱导C-X-C趋化因子受体型7(CXCR7)切换基质电池衍生的因子-1(SDF-1)信号传导和吞噬细胞吞噬活性与动脉粥样硬化有关的巨噬细胞

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The discovery of CXCR7 as a new receptor for SDF-1 places many previously described SDF-1 functions attributed to CXCR4 in question, though whether CXCR7 acts as a signaling or “decoy” receptor has been in debate. It is known that CXCR7 is not expressed in normal blood leukocytes; however, the potential role of leukocyte CXCR7 in disease states has not been addressed. The aim of this study was to determine the expression and function of macrophage CXCR7 linked to atherosclerosis. Here, we show that CXCR7 was detected in macrophage-positive area of aortic atheroma of ApoE-null mice, but not in healthy aorta. During monocyte differentiation to macrophages, CXCR7 was up-regulated at mRNA and protein levels, with more expression in M1 than in M2 phenotype. In addition, CXCR7 induction was associated with a SDF-1 signaling switch from the pro-survival ERK and AKT pathways in monocytes to the pro-inflammatory JNK and p38 pathways in macrophages. The latter effect was mimicked by a CXCR7-selective agonist TC14012 and abolished by siRNA knockdown of CXCR7. Furthermore, CXCR7 activation increased macrophage phagocytic activity, which was suppressed by CXCR7 siRNA silencing or by inhibiting either the JNK or p38 pathways, but was not affected by blocking CXCR4. Finally, activation of CXCR7 by I-TAC showed a similar signaling and phagocytic activity in macrophages with no detectable CXCR3. We conclude that CXCR7 is induced during monocyte-to-macrophage differentiation, which is required for SDF-1 and I-TAC signaling to JNK and p38 pathways, leading to enhanced macrophage phagocytosis, thus possibly contributing to atherogenesis.
机译:CXCR7作为SDF-1的新受体的发现将许多先前描述的SDF-1归因于相关的CXCR4,尽管CXCR7是否作为信令或“诱饵”受体已处于辩论中。众所周知,CXCR7在正常的血液白细胞中不表达;然而,尚未解决白细胞CXCR7在疾病状态中的潜在作用。本研究的目的是确定巨噬细胞CXCR7与动脉粥样硬化相关的表达和功能。在这里,我们表明CXCR7在Apoe-Null小鼠主动脉粥样菌的巨噬细胞阳性区域中检测到,但不在健康的主动脉中。在单核细胞分化期间,CXCR7在mRNA和蛋白水平上上调,在M1中的表达比M2表型更高。此外,CXCR7诱导与来自巨噬细胞的单核细胞中的Pro-Survival ERK和AKT途径的SDF-1信号开关与巨噬细胞中的促炎JNK和P38途径相关联。后一种效果由CXCR7选择性激动剂TC14012模拟,并通过CXCR7的siRNA敲除废除。此外,CXCR7激活增加了巨噬细胞吞噬活性,由CXCR7 siRNA沉默或通过抑制JNK或P38途径,但不受阻断CXCR4的影响。最后,通过I-TAC激活CXCR7在巨噬细胞中显示出类似的信号传导和吞噬活性,没有可检测的CXCR3。我们得出结论,CXCR7在单核细胞对巨噬细胞分化过程中诱导,这是对JNK和P38途径的SDF-1和I-TAC信号传导所需的,导致增强巨噬细胞吞噬作用,因此可能导致血液发生。

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