Yasuda Koubun, Nagafuku Masakazu, Shima Takaki, Okada Masato, Yagi Takeshi, Yamada Takenao, Minaki Yasuko, Kato Akiko, Tani-Ichi Shizue, Hamaoka Toshiyuki, Kosugi Atsushi
Department of Oncogenesis, Graduate School of Medicine, Osaka University, Osaka, Japan.
J Immunol. 2002 Sep 15;169(6):2813-7. doi: 10.4049/jimmunol.169.6.2813.
In resting T cells, Csk is constitutively localized in lipid rafts by virtue of interaction with a phosphorylated adaptor protein, Csk-binding protein (Cbp)/phosphoprotein associated with glycolipid-enriched microdomains, and sets an activation threshold in TCR signaling. In this study, we examined a kinase responsible for Cbp phosphorylation in T cell membrane rafts. By analyzing T cells from Fyn-/- mice, we clearly demonstrated that Fyn, but not Lck, has its kinase activity in membrane rafts, and plays a critical role in Cbp phosphorylation, Cbp-Csk interaction, and Csk kinase activity. Naive CD44(low)CD62 ligand(high) T cells were substantially reduced in Fyn-/- mice, presumably due to the inhibition of Cbp phosphorylation. Thus, Fyn mediates Cbp-Csk interaction and recruits Csk to rafts by phosphorylating Cbp. Csk recruited to rafts would then be activated and inhibit the kinase activity of Lck to keep resting T cells in a quiescent state. Our results elucidate a negative regulatory role for Fyn in proximal TCR signaling in lipid rafts.
在静息T细胞中,Csk通过与磷酸化衔接蛋白Csk结合蛋白(Cbp)/与富含糖脂的微结构域相关的磷蛋白相互作用,组成性地定位于脂筏中,并在TCR信号传导中设定激活阈值。在本研究中,我们检测了负责T细胞膜筏中Cbp磷酸化的激酶。通过分析来自Fyn基因敲除小鼠的T细胞,我们清楚地证明,Fyn而非Lck在膜筏中具有激酶活性,并且在Cbp磷酸化、Cbp-Csk相互作用以及Csk激酶活性中起关键作用。Fyn基因敲除小鼠中的初始CD44(低)CD62配体(高)T细胞显著减少,推测是由于Cbp磷酸化受到抑制。因此,Fyn介导Cbp-Csk相互作用,并通过磷酸化Cbp将Csk招募到脂筏中。招募到脂筏中的Csk随后会被激活,并抑制Lck的激酶活性,使静息T细胞保持静止状态。我们的结果阐明了Fyn在脂筏中近端TCR信号传导中的负调控作用。