Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, NY 14853-1301, USA.
Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, NY 14853-1301, USA
Biol Open. 2014 Jul 4;3(8):700-10. doi: 10.1242/bio.20148862.
Antigen stimulation of mast cells via FcεRI, the high-affinity receptor for IgE, triggers a signaling cascade that requires Ca(2+) mobilization for exocytosis of secretory granules during the allergic response. To characterize the role of Rho GTPases in FcεRI signaling, we utilized a mutant RBL cell line, B6A4C1, that is deficient in antigen-stimulated Cdc42 activation important for these processes. Recently the importance of stimulated intracellular oscillations has emerged, and we find that B6A4C1 cells exhibit severely attenuated Ca(2+) oscillations in response to antigen, which are restored to wild-type RBL-2H3 levels by expression of constitutively active Cdc42 G12V or by a GEF for Cdc42, DOCK7, but not when the C-terminal di-arginine motif of active Cdc42 is mutated to di-glutamine. We found that antigen-stimulated FcεRI endocytosis, which occurs independently of Ca(2+) mobilization, is also defective in B6A4C1 cells, and Cdc42 G12V reconstitutes this response as well. Thus, activation of Cdc42 occurs prior to and is critical for antigen-stimulated pathways leading separately to both Ca(2+) mobilization and receptor endocytosis. Accounting for these downstream functional consequences, we show that Cdc42 G12V reconstitutes antigen-stimulated oscillations of phosphatidylinositol 4,5-bisphosphate (PIP2) at the plasma membrane in mutant B6A4C1 cells, pointing to Cdc42 participation in the regulation of stimulated PIP2 synthesis.
通过 FcεRI(IgE 的高亲和力受体)刺激肥大细胞,引发信号级联反应,在过敏反应中需要钙动员以进行分泌颗粒的胞吐作用。为了表征 Rho GTPases 在 FcεRI 信号转导中的作用,我们利用一种突变的 RBL 细胞系 B6A4C1,该细胞系在抗原刺激 Cdc42 激活方面存在缺陷,而这种激活对于这些过程至关重要。最近,刺激细胞内振荡的重要性已经显现出来,我们发现 B6A4C1 细胞对抗原的 Ca2+ 振荡严重减弱,而通过表达组成性激活的 Cdc42 G12V 或 Cdc42 的 GEF(DOCK7)可以将其恢复到野生型 RBL-2H3 水平,但当活性 Cdc42 的 C 末端二精氨酸基序突变为二谷氨酸时则不行。我们发现,与钙动员无关的抗原刺激 FcεRI 内吞作用在 B6A4C1 细胞中也存在缺陷,而 Cdc42 G12V 也可以重建这种反应。因此,Cdc42 的激活先于并对分别导致 Ca2+ 动员和受体内吞的抗原刺激途径至关重要。考虑到这些下游功能后果,我们表明 Cdc42 G12V 可以重建突变体 B6A4C1 细胞中质膜上磷脂酰肌醇 4,5-二磷酸(PIP2)的抗原刺激振荡,表明 Cdc42 参与调节刺激的 PIP2 合成。