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Hem1的缺失会破坏巨噬细胞功能,并影响其迁移、吞噬作用以及整合素介导的黏附。

Loss of Hem1 disrupts macrophage function and impacts migration, phagocytosis, and integrin-mediated adhesion.

作者信息

Stahnke Stephanie, Döring Hermann, Kusch Charly, de Gorter David J J, Dütting Sebastian, Guledani Aleks, Pleines Irina, Schnoor Michael, Sixt Michael, Geffers Robert, Rohde Manfred, Müsken Mathias, Kage Frieda, Steffen Anika, Faix Jan, Nieswandt Bernhard, Rottner Klemens, Stradal Theresia E B

机构信息

Department of Cell Biology, Helmholtz Centre for Infection Research (HZI), Braunschweig, Germany.

Zoological Institute, Technische Universität Braunschweig, Braunschweig, Germany.

出版信息

Curr Biol. 2021 May 24;31(10):2051-2064.e8. doi: 10.1016/j.cub.2021.02.043. Epub 2021 Mar 11.

DOI:10.1016/j.cub.2021.02.043
PMID:33711252
Abstract

Hematopoietic-specific protein 1 (Hem1) is an essential subunit of the WAVE regulatory complex (WRC) in immune cells. WRC is crucial for Arp2/3 complex activation and the protrusion of branched actin filament networks. Moreover, Hem1 loss of function in immune cells causes autoimmune diseases in humans. Here, we show that genetic removal of Hem1 in macrophages diminishes frequency and efficacy of phagocytosis as well as phagocytic cup formation in addition to defects in lamellipodial protrusion and migration. Moreover, Hem1-null macrophages displayed strong defects in cell adhesion despite unaltered podosome formation and concomitant extracellular matrix degradation. Specifically, dynamics of both adhesion and de-adhesion as well as concomitant phosphorylation of paxillin and focal adhesion kinase (FAK) were significantly compromised. Accordingly, disruption of WRC function in non-hematopoietic cells coincided with both defects in adhesion turnover and altered FAK and paxillin phosphorylation. Consistently, platelets exhibited reduced adhesion and diminished integrin αIIbβ3 activation upon WRC removal. Interestingly, adhesion phenotypes, but not lamellipodia formation, were partially rescued by small molecule activation of FAK. A full rescue of the phenotype, including lamellipodia formation, required not only the presence of WRCs but also their binding to and activation by Rac. Collectively, our results uncover that WRC impacts on integrin-dependent processes in a FAK-dependent manner, controlling formation and dismantling of adhesions, relevant for properly grabbing onto extracellular surfaces and particles during cell edge expansion, like in migration or phagocytosis.

摘要

造血特异性蛋白1(Hem1)是免疫细胞中WAVE调节复合物(WRC)的一个必需亚基。WRC对于Arp2/3复合物的激活以及分支肌动蛋白丝网络的突出至关重要。此外,免疫细胞中Hem1功能丧失会导致人类自身免疫性疾病。在这里,我们表明巨噬细胞中Hem1的基因缺失除了会导致片状伪足突出和迁移缺陷外,还会降低吞噬作用的频率和效率以及吞噬杯的形成。此外,尽管足体形成和伴随的细胞外基质降解未改变,但Hem1基因敲除的巨噬细胞在细胞黏附方面表现出严重缺陷。具体而言,黏附和解黏附的动力学以及桩蛋白和黏着斑激酶(FAK)的伴随磷酸化均受到显著损害。因此,非造血细胞中WRC功能的破坏与黏附周转缺陷以及FAK和桩蛋白磷酸化改变同时发生。一致地,血小板在去除WRC后表现出黏附减少和整合素αIIbβ3激活减弱。有趣的是,通过FAK的小分子激活可部分挽救黏附表型,但不能挽救片状伪足的形成。要完全挽救该表型,包括片状伪足的形成,不仅需要存在WRC,还需要它们与Rac结合并被Rac激活。总的来说,我们的结果揭示了WRC以FAK依赖的方式影响整合素依赖性过程,控制黏附的形成和解离,这对于在细胞边缘扩展(如迁移或吞噬作用)过程中正确抓住细胞外表面和颗粒至关重要。

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