Zhang Juan, Chiang Yungping J, Hodes Richard J, Siraganian Reuben P
Oral Infection and Immunity Branch, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, USA.
J Immunol. 2004 Aug 1;173(3):1811-8. doi: 10.4049/jimmunol.173.3.1811.
The Cbl family of proteins negatively regulate signaling from tyrosine kinase-coupled receptors. Among the three members of this family, only c-Cbl and Cbl-b are expressed in hemopoietic cells. To examine the role of c-Cbl and Cbl-b in Fc epsilon RI signaling, mast cell cultures from wild-type, c-Cbl(-/-), and Cbl-b(-/-) mice were generated. Cell growth rates and cell surface expression of Fc epsilon RI were similar in the different cell populations. Compared with control cells, Cbl-b inactivation resulted in increases in Fc epsilon RI-induced Ca(2+) response and histamine release. Fc epsilon RI-induced tyrosine phosphorylation of total cellular proteins, Syk, and phospholipase C-gamma was also enhanced by Cbl-b deficiency, whereas receptor-initiated phosphorylation of Vav, JNK, and p38 kinases was not changed in these cells. In contrast to Cbl-b, c-Cbl deficiency had no detectable effect on Fc epsilon RI-induced histamine release or on the phosphorylation of total cellular proteins or Syk. The absence of c-Cbl increased the phosphorylation of ERK after receptor stimulation, but resulted in slightly reduced p38 phosphorylation and Ca(2+) response. These results suggest that Cbl-b and c-Cbl have divergent effects on Fc epsilon RI signal transduction and that Cbl-b, but not c-Cbl, functions as a negative regulator of Fc epsilon RI-induced degranulation.
Cbl 家族蛋白对酪氨酸激酶偶联受体的信号传导起负向调节作用。在该家族的三个成员中,只有 c-Cbl 和 Cbl-b 在造血细胞中表达。为了研究 c-Cbl 和 Cbl-b 在 FcεRI 信号传导中的作用,我们构建了来自野生型、c-Cbl(-/-)和 Cbl-b(-/-)小鼠的肥大细胞培养物。不同细胞群体的细胞生长速率和 FcεRI 的细胞表面表达相似。与对照细胞相比,Cbl-b 失活导致 FcεRI 诱导的 Ca(2+)反应和组胺释放增加。Cbl-b 缺陷还增强了 FcεRI 诱导的总细胞蛋白、Syk 和磷脂酶 C-γ 的酪氨酸磷酸化,而这些细胞中受体启动的 Vav、JNK 和 p38 激酶的磷酸化没有变化。与 Cbl-b 相反,c-Cbl 缺陷对 FcεRI 诱导的组胺释放或总细胞蛋白或 Syk 的磷酸化没有可检测到的影响。c-Cbl 的缺失增加了受体刺激后 ERK 的磷酸化,但导致 p38 磷酸化和 Ca(2+)反应略有降低。这些结果表明,Cbl-b 和 c-Cbl 对 FcεRI 信号转导有不同的影响,并且 Cbl-b 而非 c-Cbl 作为 FcεRI 诱导的脱颗粒的负调节因子发挥作用。