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The disintegrin-like metalloproteinase ADAM10 is involved in constitutive cleavage of CX3CL1 (fractalkine) and regulates CX3CL1-mediated cell-cell adhesion

机译:Disintegrin样金属蛋白酶ADAM10参与CX3CL1(fractalkine)的组成性切割,并调节CX3CL1介导的细胞间粘附

摘要

The CX3C chemokine fractalkine (CX3CL1) exists as a membrane-expressed protein promoting cell-cell adhesion and as a soluble molecule inducing chemotaxis. Transmembrane CX3CL1 is converted into its soluble form by defined proteolytic cleavage (shedding), which can be enhanced by stimulation with phorbol-12-myristate-13-acetate (PMA). PMA-induced CX3CL1 shedding has been shown to involve the tumor necrosis factor-alpha-converting enzyme (TACE), whereas the constitutive cleavage in unstimulated cells remains elusive. Here we demonstrate a role of the closely related disintegrin-like metalloproteinase 10 (ADAM10) in the constitutive CX3CL1 cleavage. The hydroxamate GW280264X, capable of blocking TACE as well as ADAM10, proved to be an effective inhibitor of the constitutive and the PMA-inducible CX3CL1 cleavage in CX3CL1-expressing ECV-304 cells (CX3CL1-ECV-304), whereas GI254023X, preferentially blocking ADAM10 but not TACE, reduced the constitutive cleavage only. Overexpression of ADAM10 in COS-7 cells enhanced constitutive cleavage of CX3CL1 and, more importantly, in murine fibroblasts deficient of ADAM10 constitutive CX3CL1 cleavage was markedly reduced. Thus, ADAM10 contributes to the constitutive shedding of CX3CL1 in unstimulated cells. Addressing the functional role of CX3CL1 shedding for the adhesion of monocytic cells via membrane-expressed CX3CL1, we found that THP-1 cells adhere to CX3CL1-ECV-304 cells but detach in the course of vigorous washing. Inhibition of ADAM10-mediated CX3CL1 shedding not only increased adhesive properties of CX3CL1-ECV-304 cells but also prevented de-adhesion of bound THP-1 cells. Our data demonstrate that ADAM10 is involved in the constitutive cleavage of CX3CL1 and thereby may regulate the recruitment of monocytic cells to CX3CL1-expressing cell layers.
机译:CX3C趋化因子分数链烷烃(CX3CL1)以膜表达蛋白的形式促进细胞与细胞的粘附,并以可溶分子诱导的趋化性存在。跨膜CX3CL1通过定义的蛋白水解切割(脱落)转化为可溶形式,可以通过用佛波12-肉豆蔻酸酯13-乙酸酯(PMA)刺激来增强。已显示PMA诱导的CX3CL1脱落涉及肿瘤坏死因子-α转换酶(TACE),而未刺激细胞中的组成性切割仍然难以捉摸。在这里,我们证明了密切相关的disintegrin样金属蛋白酶10(ADAM10)在组成型CX3CL1裂解中的作用。能够阻断TACE和ADAM10的异羟肟酸酯GW280264X被证明是有效的抑制表达CX3CL1的ECV-304细胞(CX3CL1-ECV-304)的本构和PMA诱导的CX3CL1裂解的抑制剂,而GI254023X则优先阻断ADAM10但不是TACE,仅减少了本构分裂。在COS-7细胞中ADAM10的过表达增强了CX3CL1的组成性切割,更重要的是,在缺乏ADAM10组成性CX3CL1切割的鼠成纤维细胞中,这种表达明显减少。因此,ADAM10有助于未刺激细胞中CX3CL1的组成型脱落。通过膜表达的CX3CL1解决CX3CL1脱落对单核细胞粘附的功能作用,我们发现THP-1细胞粘附于CX3CL1-ECV-304细胞,但在剧烈洗涤过程中会脱离。抑制ADAM10介导的CX3CL1脱落不仅增加了CX3CL1-ECV-304细胞的黏附特性,而且还阻止了结合的THP-1细胞的去黏附。我们的数据表明,ADAM10参与CX3CL1的组成性切割,从而可能调节单核细胞向表达CX3CL1的细胞层的募集。

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