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首页> 外文期刊>American Journal of Pathology >Microparticles of Human Atherosclerotic Plaques Enhance the Shedding of the Tumor Necrosis Factor- Converting Enzyme/ADAM17 Substrates, Tumor Necrosis Factor and Tumor Necrosis Factor Receptor-1
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Microparticles of Human Atherosclerotic Plaques Enhance the Shedding of the Tumor Necrosis Factor- Converting Enzyme/ADAM17 Substrates, Tumor Necrosis Factor and Tumor Necrosis Factor Receptor-1

机译:人动脉粥样硬化斑块的微粒增强了肿瘤坏死因子转换酶/ ADAM17底物,肿瘤坏死因子和肿瘤坏死因子受体-1的脱落。

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摘要

Human atherosclerotic plaques express the metalloprotease tumor necrosis factor (TNF)- converting enzyme (TACE/ADAM-17), which cleaves several transmembrane proteins including TNF and its receptors (TNFR-1 and TNFR-2). Plaques also harbor submicron vesicles (microparticles, MPs) released from plasma membranes after cell activation or apoptosis. We sought to examine whether TACE/ADAM17 is present on human plaque MPs and whether these MPs would affect TNF and TNFR-1 cellular shedding. Flow cytometry analysis detected 12,867 ± 2007 TACE/ADAM17+ MPs/mg of plaques isolated from 25 patients undergoing endarterectomy but none in healthy human internal mammary arteries. Plaque MPs harbored mainly mature active TACE/ADAM17 and dose dependently cleaved a pro-TNF mimetic peptide, whereas a preferential TACE/ADAM17 inhibitor (TMI-2) and recombinant TIMP-3 prevented this cleavage. Plaque MPs increased TNF shedding from the human cell line ECV-304 overexpressing TNF (ECV-304TNF), as well as TNFR-1 shedding from activated human umbilical vein endothelial cells or ECV-304TNF cells, without affecting TNF or TNFR-1 synthesis. MPs also activated the shedding of the endothelial protein C receptor from human umbilical vein endothelial cells. All these effects were inhibited by TMI-2. The present study shows that human plaque MPs carry catalytically active TACE/ADAM17 and significantly enhance the cell surface processing of the TACE/ADAM17 substrates TNF, TNFR-1, and endothelial protein C receptor, suggesting that TACE/ADAM17+ MPs could regulate the inflammatory balance in the culprit lesion.
机译:人的动脉粥样斑块表达金属蛋白酶肿瘤坏死因子(TNF)转换酶(TACE / ADAM-17),可裂解包括TNF及其受体(TNFR-1和TNFR-2)在内的几种跨膜蛋白。在细胞激活或凋亡后,斑块还包含从质膜释放的亚微米囊泡(微粒,MP)。我们试图检查人类斑块MPs上是否存在TACE / ADAM17,以及这些MPs是否会影响TNF和TNFR-1细胞的脱落。流式细胞术分析从25例接受动脉内膜切除术的患者中分离出的斑块中检测到12,867±2007 TACE / ADAM17 + MPs / mg的斑块,但在健康的人体内乳动脉中没有发现。斑块MPs主要包含成熟的活性TACE / ADAM17,并剂量依赖性地切割促TNF模拟肽,而优先的TACE / ADAM17抑制剂(TMI-2)和重组TIMP-3阻止了这种切割。斑块MPs增加了人细胞系ECV-304过表达的TNF(ECV-304TNF)的TNF脱落,以及活化的人脐静脉内皮细胞或ECV-304TNF细胞的TNFR-1脱落,而不会影响TNF或TNFR-1的合成。 MPs还激活了人脐静脉内皮细胞内皮蛋白C受体的脱落。所有这些作用均被TMI-2抑制。本研究表明,人斑块MPs具有催化活性TACE / ADAM17,并显着增强TACE / ADAM17底物TNF,TNFR-1和内皮蛋白C受体的细胞表面加工,表明TACE / ADAM17 + MPs可以调节炎症平衡在罪魁祸首。

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