Schachtner Hannah, Weimershaus Mirjana, Stache Vanessa, Plewa Natalia, Legler Daniel F, Höpken Uta E, Maritzen Tanja
Molecular Physiology and Cell Biology Section, Leibniz-Institute for Molecular Pharmacology (FMP), Berlin, Germany.
Max-Delbrück-Center for Molecular Medicine (MDC), Berlin, Germany.
PLoS One. 2015 Dec 1;10(12):e0143883. doi: 10.1371/journal.pone.0143883. eCollection 2015.
Migration is crucial for the function of dendritic cells (DCs), which act as outposts of the immune system. Upon detection of pathogens, skin- and mucosa-resident DCs migrate to secondary lymphoid organs where they activate T cells. DC motility relies critically on the actin cytoskeleton, which is regulated by the actin-related protein 2/3 (ARP2/3) complex, a nucleator of branched actin networks. Consequently, loss of ARP2/3 stimulators and upstream Rho family GTPases dramatically impairs DC migration. However, nothing is known yet about the relevance of ARP2/3 inhibitors for DC migration. We previously demonstrated that the AP-1-associated adaptor protein Gadkin inhibits ARP2/3 by sequestering it on intracellular vesicles. Consistent with a role of Gadkin in DC physiology, we here report Gadkin expression in bone marrow-derived DCs and show that its protein level and posttranslational modification are regulated upon LPS-induced DC maturation. DCs derived from Gadkin-deficient mice were normal with regards to differentiation and maturation, but displayed increased actin polymerization. While the actin-dependent processes of macropinocytosis and cell spreading were not affected, loss of Gadkin significantly impaired DC migration in vitro, however, in vivo DC migration was unperturbed suggesting the presence of compensatory mechanisms.
迁移对于树突状细胞(DCs)的功能至关重要,树突状细胞作为免疫系统的前哨。在检测到病原体后,驻留在皮肤和黏膜的DCs迁移至次级淋巴器官,在那里它们激活T细胞。DC的运动性关键依赖于肌动蛋白细胞骨架,而肌动蛋白细胞骨架由肌动蛋白相关蛋白2/3(ARP2/3)复合物调节,ARP2/3复合物是分支肌动蛋白网络的成核剂。因此,ARP2/3刺激物和上游Rho家族GTP酶的缺失会显著损害DC的迁移。然而,关于ARP2/3抑制剂与DC迁移的相关性尚不清楚。我们之前证明AP-1相关衔接蛋白Gadkin通过将ARP2/3隔离在细胞内囊泡上来抑制它。与Gadkin在DC生理学中的作用一致,我们在此报告骨髓来源的DCs中Gadkin的表达,并表明其蛋白质水平和翻译后修饰在LPS诱导的DC成熟过程中受到调节。源自Gadkin缺陷小鼠的DCs在分化和成熟方面正常,但肌动蛋白聚合增加。虽然巨胞饮作用和细胞铺展的肌动蛋白依赖性过程未受影响,但Gadkin缺失显著损害了DC在体外的迁移,然而在体内DC迁移未受干扰,这表明存在补偿机制。