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首页> 外文期刊>The journal of immunology >TNF-α-Converting Enzyme Cleaves the Macrophage Colony-Stimulating Factor Receptor in Macrophages Undergoing Activation
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TNF-α-Converting Enzyme Cleaves the Macrophage Colony-Stimulating Factor Receptor in Macrophages Undergoing Activation

机译:TNF-α转换酶在激活的巨噬细胞中裂解巨噬细胞集落刺激因子受体。

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We previously reported that macrophage activators such as LPS, IL-2, and IL-4 down-modulate the M-CSFR via a mechanism involving protein kinase C and phospholipase C. In this study, we showed that M-CSFR is shed from macrophage surface and identified the protease responsible for M-CSFR cleavage and down-modulation. The shedding of M-CSFR elicited by phorbol esters (tetradecanoylphorbol myristate acetate (TPA)) or LPS in murine BAC.1-2F5 macrophages was prevented by cation chelators, as well as hydroxamate-based competitive inhibitors of metalloproteases. We found that the protease cleaving M-CSFR is a transmembrane enzyme and that its expression is controlled by furin-like serine endoproteases, which selectively process transmembrane metalloproteases. M-CSFR down-modulation was inhibited by treating cells in vivo, before TPA stimulation, with an Ab raised against the extracellular, catalytic domain of proTNF-converting enzyme (TACE). TACE expression was confirmed in BAC.1-2F5 cells and found inhibited after blocking furin-dependent processing. Using TACE-negative murine Dexter- ras-myc cell monocytes, we found that in these cells TPA is unable to down-modulate M-CSFR expression. These data indicated that TACE is required for the TPA-induced M-CSFR cleavage. The possibility that the cleavage is indirectly driven by TACE via the release of TNF was excluded by treating cells in vivo with anti-TNF Ab. Thus, we concluded that TACE is the protease responsible for M-CSFR shedding and down-modulation in mononuclear phagocytes undergoing activation. The possible physiological relevance of this mechanism is discussed.
机译:我们之前曾报道过巨噬细胞激活剂(例如LPS,IL-2和IL-4)通过涉及蛋白激酶C和磷脂酶C的机制下调M-CSFR。在这项研究中,我们表明M-CSFR从巨噬细胞脱落表面并鉴定出负责M-CSFR裂解和下调的蛋白酶。佛波酯(十四烷酰佛波肉豆蔻酸酯乙酸酯(TPA))或LPS在鼠类BAC.1-2F5巨噬细胞中引起的M-CSFR脱落被阳离子螯合剂以及基于异羟肟酸酯的金属蛋白酶竞争性抑制剂阻止。我们发现蛋白酶切割M-CSFR是跨膜酶,并且其表达受弗林蛋白酶样丝氨酸内切蛋白酶的控制,后者选择性地处理跨膜金属蛋白酶。在TPA刺激之前,通过在体内处理细胞来抑制M-CSFR的下调,其抗体针对proTNF转化酶(TACE)的胞外催化域。 TACE表达在BAC.1-2F5细胞中得到证实,并在阻断弗林蛋白酶依赖性加工后被抑制。使用TACE阴性鼠类Dexterras-myc细胞单核细胞,我们发现在这些细胞中TPA无法下调M-CSFR表达。这些数据表明,TPA诱导的M-CSFR裂解需要TACE。通过用抗TNF Ab体内处理细胞,排除了TACE通过释放TNF间接驱动卵裂的可能性。因此,我们得出结论,TACE是负责经历激活的单核吞噬细胞中M-CSFR脱落和下调的蛋白酶。讨论了该机制可能的生理相关性。

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