Chiang Y Jeffrey, Hodes Richard J
Experimental Immunology Branch, National Cancer Institute, Bethesda, MD 20892, USA.
Experimental Immunology Branch, National Cancer Institute, Bethesda, MD 20892, USA National Institute on Aging, National Institutes of Health, Bethesda, MD 20892, USA
Int Immunol. 2015 May;27(5):245-51. doi: 10.1093/intimm/dxu105. Epub 2014 Dec 4.
A canonical pre-TCR/TCR signaling pathway critical for thymic T cell development involves sequential phosphorylation and signaling through Lck, Zap70, Lat and Slp76. However, we and others have previously reported that genomic deletion of c-Cbl (Cbl) partially or completely reverses the defects in thymic development in mice deficient in Zap70, Slp76, Lat or Vav1, indicating the presence of alternative pathways normally suppressed by Cbl. To further elucidate pre-TCR/TCR signaling pathways involved in thymic development, we characterized the effect of Cbl inactivation on developmental and signaling defects in mice deficient in proximal signaling molecules Lck and Zap70. Inactivation of Cbl partially reversed defective T cell development in Zap70 (-/-) mice and reversed defects in phosphorylation of Erk, Plc-γ1, Vav1 and Akt, in TCR-stimulated Cbl (-/-) Zap70 (-/-) thymocytes. Recent reports identified an essential role of Lck in associating with CD4 and CD8 coreceptors and mediating the requirement for MHC restriction in TCR recognition. Since TCR recognition has been shown to be MHC-restricted in Cbl (-/-) mice, it was of interest to determine whether the requirement for Lck remained unmodified by Cbl deletion. Indeed, in contrast to the effect of Cbl inactivation in partially or fully bypassing requirements for other TCR signaling components, inactivation of Cbl did not reverse either defective T cell development or defective phosphorylation of TCR signaling molecules in Lck (-/-) mice. Thus, Lck, which plays a unique role in enforcing MHC restriction, is essential for thymic development in presence or absence of Cbl, ensuring MHC restriction of T cells derived from either pathway.
一条对胸腺T细胞发育至关重要的典型前TCR/TCR信号通路涉及通过Lck、Zap70、Lat和Slp76的顺序磷酸化和信号传导。然而,我们和其他人之前报道,c-Cbl(Cbl)的基因缺失部分或完全逆转了Zap70、Slp76、Lat或Vav1缺陷小鼠胸腺发育的缺陷,这表明存在通常被Cbl抑制的替代途径。为了进一步阐明参与胸腺发育的前TCR/TCR信号通路,我们研究了Cbl失活对近端信号分子Lck和Zap70缺陷小鼠发育和信号缺陷的影响。Cbl失活部分逆转了Zap70(-/-)小鼠中缺陷的T细胞发育,并逆转了TCR刺激的Cbl(-/-)Zap70(-/-)胸腺细胞中Erk、Plc-γ1、Vav1和Akt磷酸化的缺陷。最近的报道确定了Lck在与CD4和CD8共受体结合以及介导TCR识别中对MHC限制的需求方面的重要作用。由于在Cbl(-/-)小鼠中TCR识别已被证明是MHC限制的,因此确定Lck的需求是否不受Cbl缺失的影响是很有意义的。事实上,与Cbl失活部分或完全绕过对其他TCR信号成分需求的作用相反,Cbl失活并没有逆转Lck(-/-)小鼠中缺陷的T细胞发育或TCR信号分子的缺陷磷酸化。因此,在实施MHC限制中起独特作用的Lck,无论有无Cbl,对胸腺发育都是必不可少的,确保了来自任何一条途径的T细胞的MHC限制。