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粒细胞-巨噬细胞集落刺激因子诱导的CD34(+)造血祖细胞上CXCR3的表达:II. 涉及的信号通路

CXCR3 expression on CD34(+) hemopoietic progenitors induced by granulocyte-macrophage colony-stimulating factor: II. Signaling pathways involved.

作者信息

Jinquan T, Anting L, Jacobi H H, Glue C, Jing C, Ryder L P, Madsen H O, Svejgaard A, Skov P S, Malling H J, Poulsen L K

机构信息

Laboratory of Medical Allergology, Allergy Unit, Department of Clinical Immunology, National University Hospital, Copenhagen, Denmark.

出版信息

J Immunol. 2001 Oct 15;167(8):4405-13. doi: 10.4049/jimmunol.167.8.4405.

Abstract

CXCR3, known to have four ligands (IFN-gamma inducible protein 10 (gamma IP-10), monokine induced by IFN-gamma (Mig), I-TAC, and 6Ckine), is predominantly expressed on memory/activated T lymphocytes. We recently reported that GM-CSF induces CXCR3 expression on CD34(+) hemopoietic progenitors, in which gamma IP-10 and Mig induce chemotaxis and adhesion. Here we further report that stimulation with GM-CSF causes phosphorylation of Syk protein kinase, but neither Casitas B-lineage lymphoma (Cbl) nor Cbl-b in CD34(+) hemopoietic progenitors can be blocked by anti-CD116 mAb. Specific Syk blocking generated by PNA antisense completely inhibits GM-CSF-induced CXCR3 expression in CD34(+) progenitors at both mRNA and protein as well as at functional levels (chemotaxis and adhesion). Cbl and Cbl-b blocking have no such effects. Thus, GM-CSF binds to its receptor CD116, and consequently activates Syk phosphorylation, which leads to induce CXCR3 expression. gamma IP-10 and Mig can induce Syk, Cbl, and Cbl-b phosphorylation in CD34(+) progenitors by means of CXCR3. gamma IP-10 or Mig has induced neither chemotaxis nor adhesion in GM-CSF-stimulated Cbl-b-blocked CD34(+) hemopoietic progenitors, whereas SDF-1alpha induces both chemotaxis and adhesion in these cells. Interestingly, gamma IP-10 and Mig can induce chemotaxis and adhesion in GM-CSF-stimulated Syk- or Cbl-blocked CD34(+) hemopoietic progenitors. Thus, Cbl-b, but not Syk and Cbl phosphorylation, is essential for gamma IP-10- and Mig-induced chemotaxis and adhesion in CD34(+) hemopoietic progenitors. This study provides a useful insight into novel signaling transduction pathways of the functions of CXCR3/gamma IP-10 and Mig, which may be especially important in the cytokine/chemokine environment for mobilization, homing, and recruitment during proliferation, differentiation, and maturation of hemopoietic progenitor cells.

摘要

已知CXCR3有四种配体(γ干扰素诱导蛋白10(γIP-10)、γ干扰素诱导的单核因子(Mig)、I-TAC和6Ckine),主要在记忆/活化的T淋巴细胞上表达。我们最近报道,粒细胞-巨噬细胞集落刺激因子(GM-CSF)可诱导CD34(+)造血祖细胞表达CXCR3,其中γIP-10和Mig可诱导趋化性和黏附。在此我们进一步报道,GM-CSF刺激可导致脾酪氨酸激酶(Syk)蛋白激酶磷酸化,但抗CD116单克隆抗体不能阻断CD34(+)造血祖细胞中的卡斯他斯B系淋巴瘤(Cbl)或Cbl-b。PNA反义核酸产生的特异性Syk阻断在mRNA、蛋白质以及功能水平(趋化性和黏附)上完全抑制GM-CSF诱导的CD34(+)祖细胞中CXCR3的表达。Cbl和Cbl-b阻断没有这种作用。因此,GM-CSF与其受体CD116结合,从而激活Syk磷酸化,进而诱导CXCR3表达。γIP-10和Mig可通过CXCR3诱导CD34(+)祖细胞中Syk、Cbl和Cbl-b磷酸化。γIP-10或Mig在GM-CSF刺激的Cbl-b阻断的CD34(+)造血祖细胞中既不诱导趋化性也不诱导黏附,而基质细胞衍生因子-1α(SDF-1α)在这些细胞中诱导趋化性和黏附。有趣的是,γIP-10和Mig可在GM-CSF刺激的Syk或Cbl阻断的CD34(+)造血祖细胞中诱导趋化性和黏附。因此,Cbl-b而非Syk和Cbl磷酸化对于γIP-10和Mig诱导的CD34(+)造血祖细胞趋化性和黏附至关重要。本研究为CXCR3/γIP-10和Mig功能的新型信号转导途径提供了有益的见解,这在细胞因子/趋化因子环境中对于造血祖细胞增殖、分化和成熟过程中的动员、归巢和募集可能尤为重要。

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