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首页> 外文期刊>Journal of cell biology >Fc epsilon RI-mediated association of 6-micron beads with RBL-2H3 mast cells results in exclusion of signaling proteins from the forming phagosome and abrogation of normal downstream signaling.
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Fc epsilon RI-mediated association of 6-micron beads with RBL-2H3 mast cells results in exclusion of signaling proteins from the forming phagosome and abrogation of normal downstream signaling.

机译:FcεRI介导的6微米珠与RBL-2H3肥大细胞的结合导致信号蛋白从形成的吞噬体中排除,并消除了正常的下游信号传导。

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摘要

Cells of the mucosal mast cell line, RBL-2H3, are normally stimulated to degranulate after aggregation of high affinity receptors for IgE (Fc epsilon RI) by soluble cross-linking ligands. This cellular degranulation process requires sustained elevation of cytoplasmic Ca2+. In this study, we investigated the response of RBL-2H3 cells to 6-micron beads coated with IgE-specific ligands. These ligand-coated beads cause only small, transient Ca2+ responses, even though the same ligands added in soluble form cause larger, more sustained Ca2+ responses. The ligand-coated 6-micron beads also fail to stimulate significant degranulation of RBL-2H3 cells, whereas much larger ligand-coated Sepharose beads stimulate ample degranulation. Confocal fluorescence microscopy shows that the 6-micron beads (but not the Sepharose beads) are phagocytosed by RBL-2H3 cells and that, beginning with the initial stages of bead engulfment, there is exclusion of many plasma membrane components from the 6-micron bead/cell interface, including p53/56lyn and several other markers for detergent-resistant membrane domains, as well as an integrin and unliganded IgE-Fc epsilon RI. The fluorescent lipid probe DiIC16 is a marker for the membrane domains that is excluded from the cell/bead interface, whereas a structural analogue, fast DiI, which differs from DiIC16 by the presence of unsaturated acyl chains, is not substantially excluded from the interface. None of these components are excluded from the interface of RBL-2H3 cells and the large Sepharose beads. Additional confocal microscopy analysis indicates that microfilaments are involved in the exclusion of plasma membrane components from the cell/bead interface. These results suggest that initiation of phagocytosis diverts normal signaling pathways in a cytoskeleton-driven membrane clearance process that alters the physiological response of the cells.
机译:粘膜肥大细胞系RBL-2H3的细胞通常通过可溶性交联配体聚集IgE的高亲和力受体(FcεRI)后脱颗粒。这种细胞脱粒过程要求细胞质Ca2 +持续升高。在这项研究中,我们调查了RBL-2H3细胞对涂有IgE特异性配体的6微米微珠的反应。尽管以可溶性形式添加的相同配体引起更大,更持久的Ca2 +响应,但这些配体包被的珠仅引起较小的瞬时Ca2 +响应。配体包被的6微米珠也无法刺激RBL-2H3细胞的显着脱粒,而更大的配体包被的Sepharose珠则刺激了充分的脱粒。共聚焦荧光显微镜显示,6微米珠子(而非琼脂糖珠子不被RBL-2H3细胞吞噬),并且从珠子吞噬的初始阶段开始,从6微米珠子中排除了许多质膜成分/细胞界面,包括p53 / 56lyn和耐洗涤剂性膜结构域的其他几种标记,以及整联蛋白和未配体的IgE-FcεRI。荧光脂质探针DiIC16是膜结构域的标志物,该结构域被排除在细胞/珠子界面之外,而结构类似物快速DiI(由于存在不饱和酰基链而与DiIC16不同)基本上没有被排除在界面之外。这些成分均未排除在RBL-2H3细胞与大琼脂糖珠之间的界面中。额外的共聚焦显微镜分析表明,微丝参与了细胞/珠界面中质膜成分的排除。这些结果表明,吞噬作用的启动会改变细胞骨架驱动的膜清除过程中的正常信号通路,从而改变细胞的生理反应。

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