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切应力诱导内皮细胞上的 ICAM-1 纳米簇集,从而影响 T 细胞迁移。

Shear forces induce ICAM-1 nanoclustering on endothelial cells that impact on T-cell migration.

机构信息

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, Barcelona, Spain; Department of Biosystems and Soft Matter, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw, Poland.

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, Barcelona, Spain.

出版信息

Biophys J. 2021 Jul 6;120(13):2644-2656. doi: 10.1016/j.bpj.2021.05.016. Epub 2021 Jun 2.

Abstract

The leukocyte-specific β-integrin LFA-1 and its ligand ICAM-1, expressed on endothelial cells (ECs), are involved in the arrest, adhesion, and transendothelial migration of leukocytes. Although the role of mechanical forces on LFA-1 activation is well established, the impact of forces on its major ligand ICAM-1 has received less attention. Using a parallel-plate flow chamber combined with confocal and super-resolution microscopy, we show that prolonged shear flow induces global translocation of ICAM-1 on ECs upstream of flow direction. Interestingly, shear forces caused actin rearrangements and promoted actin-dependent ICAM-1 nanoclustering before LFA-1 engagement. T cells adhered to mechanically prestimulated ECs or nanoclustered ICAM-1 substrates developed a promigratory phenotype, migrated faster, and exhibited shorter-lived interactions with ECs than when adhered to non mechanically stimulated ECs or to monomeric ICAM-1 substrates. Together, our results indicate that shear forces increase ICAM-1/LFA-1 bonds because of ICAM-1 nanoclustering, strengthening adhesion and allowing cells to exert higher traction forces required for faster migration. Our data also underscore the importance of mechanical forces regulating the nanoscale organization of membrane receptors and their contribution to cell adhesion regulation.

摘要

白细胞特异性 β 整合素 LFA-1 及其配体 ICAM-1 在血管内皮细胞(ECs)上表达,参与白细胞的停滞、黏附和跨内皮迁移。尽管机械力对 LFA-1 激活的作用已得到充分证实,但力对其主要配体 ICAM-1 的影响受到的关注较少。我们使用平行板流动室结合共聚焦和超分辨率显微镜,显示出长时间的剪切流诱导 ICAM-1 在流动方向上游的 EC 上的全局易位。有趣的是,剪切力引起肌动蛋白重排,并在 LFA-1 结合之前促进肌动蛋白依赖性 ICAM-1 纳米簇形成。与黏附在未受机械刺激的 EC 上或黏附在单体 ICAM-1 底物上的 T 细胞相比,黏附在机械预刺激的 EC 上或黏附在纳米簇集的 ICAM-1 底物上的 T 细胞会表现出促迁移表型,迁移更快,与 EC 的相互作用持续时间更短。总之,我们的结果表明,剪切力通过 ICAM-1 纳米簇形成增加了 ICAM-1/LFA-1 键,从而增强了黏附力,并使细胞能够施加更快迁移所需的更高牵引力。我们的数据还强调了机械力调节膜受体纳米级组织及其对细胞黏附调节的贡献的重要性。

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