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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Dual Role of Melanoma Cell Adhesion Molecule (MCAM)/CD146 in Lymphocyte Endothelium Interaction: MCAM/CD146 Promotes Rolling via Microvilli Induction in Lymphocyte and Is an Endothelial Adhesion Receptor.
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Dual Role of Melanoma Cell Adhesion Molecule (MCAM)/CD146 in Lymphocyte Endothelium Interaction: MCAM/CD146 Promotes Rolling via Microvilli Induction in Lymphocyte and Is an Endothelial Adhesion Receptor.

机译:黑色素瘤细胞粘附分子(MCAM)/ CD146在淋巴细胞内皮相互作用中的双重作用:MCAM / CD146促进淋巴细胞微绒毛诱导滚动,是内皮粘附受体。

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摘要

The melanoma cell adhesion molecule (MCAM)/CD146 is expressed as two isoforms differing by their cytoplasmic domain (MCAM long (MCAM-l) and MCAM short (MCAM-s)). MCAM being expressed by endothelial cells and activated T cells, we analyzed its involvement in lymphocyte trafficking. The NK cell line NKL1 was transfected by MCAM isoforms and submitted to adhesion on both the endothelial cell monolayer and recombinant molecules under shear stress. MCAM-l transfection reduced rolling velocity and increased NKL1 adhesion on the endothelial cell monolayer and VCAM-1. Scanning electron microscopy revealed that MCAM-l induced microvilli formation and extension. In contrast, MCAM short or mock transfection had no effect on adhesion of NKL1 cells and microvilli formation. As shown by mutagenesis, serine 32 of the MCAM-l cytoplasmic tail, belonging to a putative protein kinase C phosphorylation site, was necessary for MCAM-l-actin cytoskeleton interaction and microvilli induction. Accordingly, chelerythrine chloride, a protein kinase C inhibitor, abolished MCAM-l-induced microvilli and rolling of MCAM-l-transfected NKL1 cells. Inhibition of adhesion under shear stress by anti-MCAM Abs suggested that both lymphoid MCAM-l and endothelial MCAM were also directly involved in lymphocyte endothelium interaction. MCAM-l-transfected NKL1 and activated CD4 T cells adhered to rMCAM under shear stress whereas anti-MCAM Ab treatment inhibited this process. Taken together, these data establish that MCAM is involved in the initial steps of lymphocyte endothelium interaction. By promoting the rolling on the inflammation marker VCAM-1 via microvilli induction and displaying adhesion receptor activity involving possible homophilic MCAM-l-MCAM-l interactions, MCAM might be involved in the recruitment of activated T cells to inflammation sites.
机译:黑色素瘤细胞粘附分子(MCAM)/ CD146被表达为两种同工型,它们的胞质结构域不同(MCAM长(MCAM-1)和MCAM短(MCAM-s))。 MCAM由内皮细胞和活化的T细胞表达,我们分析了其参与淋巴细胞运输。 NK细胞系NKL1被MCAM亚型转染,并在剪切应力作用下粘附在内皮细胞单层和重组分子上。 MCAM-1转染降低了滚动速度并增加了NKL1在内皮细胞单层和VCAM-1上的粘附。扫描电子显微镜显示,MCAM-1诱导了微绒毛的形成和延伸。相比之下,MCAM短或模拟转染对NKL1细胞的粘附和微绒毛的形成没有影响。如诱变所示,属于MCAM-1-肌动蛋白细胞骨架相互作用和微绒毛诱导所必需的MCAM-1胞质尾丝氨酸32,属于假定的蛋白激酶C磷酸化位点。因此,白屈菜红碱氯化物,一种蛋白激酶C抑制剂,废除了MCAM-1诱导的微绒毛,并废除了MCAM-1转染的NKL1细胞。抗MCAM抗体在剪切应力下抑制粘附表明,淋巴样MCAM-1和内皮MCAM也直接参与淋巴细胞内皮相互作用。 MCAM-1转染的NKL1和活化的CD4 T细胞在剪切应力下粘附于rMCAM,而抗MCAM Ab处理抑制了该过程。综上所述,这些数据证实MCAM参与了淋巴细胞内皮相互作用的初始步骤。通过经由微绒毛诱导促进炎症标志物VCAM-1上的滚动并显示涉及可能的同源MCAM-1-MCAM-1相互作用的粘附受体活性,MCAM可能参与活化的T细胞向炎症部位的募集。

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