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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Overlapping and distinct role of CXCR7-SDF-1/ITAC and CXCR4-SDF-1 axes in regulating metastatic behavior of human rhabdomyosarcomas.
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Overlapping and distinct role of CXCR7-SDF-1/ITAC and CXCR4-SDF-1 axes in regulating metastatic behavior of human rhabdomyosarcomas.

机译:CXCR7-SDF-1 / ITAC和CXCR4-SDF-1轴在调节人类横纹肌肉瘤转移行为中的重叠作用和独特作用。

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We have demonstrated that the alpha-chemokine stromal-derived factor (SDF)-1-CXCR4 axis plays an important role in rhabdomyosarcoma (RMS) metastasis. With the recent description of CXCR7, a new receptor for SDF-1 that also binds the interferon-inducible T-cell alpha chemoattractant (ITAC) chemokine, we became interested in the role of the CXCR7-SDF-1/ITAC axis in RMS progression. To address this issue, we evaluated 6 highly metastatic alveolar (A)RMS and 3 less metastatic embryonal (E)RMS cell lines and found that all these cell lines express CXCR7. Although CXCR4 was expressed at a much higher level by highly metastatic ARMS lines, CXCR7 was present at a high level on ERMS lines. We also noticed that CXCR7 expression on RMS cells was downregulated in hypoxic conditions. More importantly, the CXCR7 receptor on RMS cell lines was functional after stimulation with ITAC and SDF-1 as evidenced by mitogen-activated protein kinase (MAPK)p42/44 and AKT phosphorylation as well as CXCR7 internalization, chemotaxis, cell motility and adhesion assays. Similarly to CXCR4, signaling from activated CXCR7 was not associated with increased RMS proliferation or cell survival. Moreover, CXCR7(+) RMS cells responded to SDF-1 and I-TAC in the presence of CXCR4 antagonists (T140, AMD3100). Furthermore, while intravenous injection of RMS cells with overexpressed CXCR7 resulted in increased seeding efficiency of tumor cells to bone marrow, CXCR7 downregulation showed the opposite effect. In conclusion, the CXCR7-SDF-1/ITAC axis is involved in the progression of RMS; targeting of the CXCR4-SDF-1 axis alone without simultaneous blockage of CXCR7 will be an inefficient strategy for inhibiting SDF-1-mediated prometastatic responses of RMS cells.
机译:我们已经证明,α趋化因子基质衍生因子(SDF)-1-CXCR4轴在横纹肌肉瘤(RMS)转移中起重要作用。随着最近对CXCR7的描述,CXCR7是SDF-1的新受体,它也与干扰素诱导的T细胞α趋化因子(ITAC)趋化因子结合,我们对CXCR7-SDF-1 / ITAC轴在RMS进程中的作用感兴趣。为了解决此问题,我们评估了6种高度转移性肺泡(A)RMS和3种转移性较差的胚胎(E)RMS细胞系,发现所有这些细胞系均表达CXCR7。尽管高度转移的ARMS品系以更高的水平表达CXCR4,但ERMS品系以高水平的形式存在CXCR7。我们还注意到缺氧条件下RMS细胞上的CXCR7表达下调。更重要的是,有丝分裂原激活的蛋白激酶(MAPK)p42 / 44和AKT磷酸化以及CXCR7内在化,趋化性,细胞运动性和粘附性试验证明,用ITAC和SDF-1刺激后,RMS细胞系上的CXCR7受体即可发挥功能。 。与CXCR4相似,激活的CXCR7发出的信号与RMS增殖或细胞存活率增加无关。此外,在存在CXCR4拮抗剂(T140,AMD3100)的情况下,CXCR7(+)RMS细胞对SDF-1和I-TAC有反应。此外,尽管静脉内注射过量表达的CXCR7的RMS细胞导致肿瘤细胞向骨髓的接种效率提高,但CXCR7的下调显示出相反的作用。总而言之,CXCR7-SDF-1 / ITAC轴参与了RMS的进程。单独靶向CXCR4-SDF-1轴而没有同时阻断CXCR7将是抑制RMS细胞的SDF-1介导的前转移反应的无效策略。

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