Field K A, Apgar J R, Hong-Geller E, Siraganian R P, Baird B, Holowka D
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York, USA.
Mol Biol Cell. 2000 Oct;11(10):3661-73. doi: 10.1091/mbc.11.10.3661.
Characterization of defects in a variant subline of RBL mast cells has revealed a biochemical event proximal to IgE receptor (Fc epsilon RI)-stimulated tyrosine phosphorylation that is required for multiple functional responses. This cell line, designated B6A4C1, is deficient in both Fc epsilon RI-mediated degranulation and biosynthesis of several lipid raft components. Agents that bypass receptor-mediated Ca(2+) influx stimulate strong degranulation responses in these variant cells. Cross-linking of IgE-Fc epsilon RI on these cells stimulates robust tyrosine phosphorylation but fails to mobilize a sustained Ca(2+) response. Fc epsilon RI-mediated inositol phosphate production is not detectable in these cells, and failure of adenosine receptors to mobilize Ca(2+) suggests a general deficiency in stimulated phospholipase C activity. Antigen stimulation of phospholipases A(2) and D is also defective. Infection of B6A4C1 cells with vaccinia virus constructs expressing constitutively active Rho family members Cdc42 and Rac restores antigen-stimulated degranulation, and active Cdc42 (but not active Rac) restores ganglioside and GPI expression. The results support the hypothesis that activation of Cdc42 and/or Rac is critical for Fc epsilon RI-mediated signaling that leads to Ca(2+) mobilization and degranulation. Furthermore, they suggest that Cdc42 plays an important role in the biosynthesis and expression of certain components of lipid rafts.
对RBL肥大细胞变异亚系中的缺陷进行表征,揭示了一个靠近IgE受体(FcεRI)刺激的酪氨酸磷酸化的生化事件,这是多种功能反应所必需的。这个细胞系被命名为B6A4C1,在FcεRI介导的脱颗粒和几种脂筏成分的生物合成方面均存在缺陷。绕过受体介导的Ca(2+)内流的试剂能在这些变异细胞中刺激强烈的脱颗粒反应。这些细胞上IgE-FcεRI的交联刺激了强烈的酪氨酸磷酸化,但未能引发持续的Ca(2+)反应。在这些细胞中无法检测到FcεRI介导的肌醇磷酸生成,腺苷受体无法动员Ca(2+)表明刺激的磷脂酶C活性普遍存在缺陷。抗原对磷脂酶A(2)和D的刺激也存在缺陷。用表达组成型活性Rho家族成员Cdc42和Rac的痘苗病毒构建体感染B6A4C1细胞,可恢复抗原刺激的脱颗粒,活性Cdc42(而非活性Rac)可恢复神经节苷脂和GPI的表达。结果支持这样的假说,即Cdc42和/或Rac的激活对于FcεRI介导的导致Ca(2+)动员和脱颗粒的信号传导至关重要。此外,它们表明Cdc42在脂筏某些成分的生物合成和表达中起重要作用。