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信号素7A促进趋化因子驱动的树突状细胞迁移。

Semaphorin 7A Promotes Chemokine-Driven Dendritic Cell Migration.

作者信息

van Rijn Anoek, Paulis Leonie, te Riet Joost, Vasaturo Angela, Reinieren-Beeren Inge, van der Schaaf Alie, Kuipers Arthur J, Schulte Luuk P, Jongbloets Bart C, Pasterkamp R Jeroen, Figdor Carl G, van Spriel Annemiek B, Buschow Sonja I

机构信息

Department of Tumor Immunology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, 6525 GA Nijmegen, the Netherlands;

Department of Pediatric Oncology, Radboud University Medical Center, 6525 GA Nijmegen, the Netherlands; and.

出版信息

J Immunol. 2016 Jan 1;196(1):459-68. doi: 10.4049/jimmunol.1403096. Epub 2015 Nov 23.

Abstract

Dendritic cell (DC) migration is essential for efficient host defense against pathogens and cancer, as well as for the efficacy of DC-based immunotherapies. However, the molecules that induce the migratory phenotype of DCs are poorly defined. Based on a large-scale proteome analysis of maturing DCs, we identified the GPI-anchored protein semaphorin 7A (Sema7A) as being highly expressed on activated primary myeloid and plasmacytoid DCs in human and mouse. We demonstrate that Sema7A deficiency results in impaired chemokine CCL21-driven DC migration in vivo. Impaired formation of actin-based protrusions, resulting in slower three-dimensional migration, was identified as the mechanism underlying the DC migration defect. Furthermore, we show, by atomic force microscopy, that Sema7A decreases adhesion strength to extracellular matrix while increasing the connectivity of adhesion receptors to the actin cytoskeleton. This study demonstrates that Sema7A controls the assembly of actin-based protrusions that drive DC migration in response to CCL21.

摘要

树突状细胞(DC)迁移对于宿主有效抵御病原体和癌症以及基于DC的免疫疗法的疗效至关重要。然而,诱导DC迁移表型的分子仍不清楚。基于对成熟DC的大规模蛋白质组分析,我们确定糖基磷脂酰肌醇(GPI)锚定蛋白信号素7A(Sema7A)在人和小鼠的活化原代髓样和浆细胞样DC上高度表达。我们证明,Sema7A缺陷导致体内趋化因子CCL21驱动的DC迁移受损。基于肌动蛋白的突起形成受损,导致三维迁移减慢,被确定为DC迁移缺陷的潜在机制。此外,我们通过原子力显微镜显示,Sema7A降低了与细胞外基质的粘附强度,同时增加了粘附受体与肌动蛋白细胞骨架的连接性。这项研究表明,Sema7A控制基于肌动蛋白的突起的组装,这些突起驱动DC响应CCL21进行迁移。

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