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依赖Lck的Fyn激活需要激酶活性Lck通过C末端依赖性方式靶向脂筏。

Lck-dependent Fyn activation requires C terminus-dependent targeting of kinase-active Lck to lipid rafts.

作者信息

Filipp Dominik, Moemeni Behrouz, Ferzoco Alessandra, Kathirkamathamby Kirishanthy, Zhang Jenny, Ballek Ondrej, Davidson Dominique, Veillette André, Julius Michael

机构信息

Sunnybrook Research Institute and the Department of Immunology, University of Toronto, Toronto, Ontario M4N 3M5, Canada.

出版信息

J Biol Chem. 2008 Sep 26;283(39):26409-22. doi: 10.1074/jbc.M710372200. Epub 2008 Jul 27.

Abstract

Mechanisms regulating the activation and delivery of function of Lck and Fyn are central to the generation of the most proximal signaling events emanating from the T cell antigen receptor (TcR) complex. Recent results demonstrate that lipid rafts (LR) segregate Lck and Fyn and play a fundamental role in the temporal and spatial coordination of their activation. Specifically, TcR-CD4 co-aggregation-induced Lck activation outside LR results in Lck translocation to LR where the activation of LR-resident Fyn ensues. Here we report a structure-function analysis toward characterizing the mechanism supporting Lck partitioning to LR and its capacity to activate co-localized Fyn. Using NIH 3T3 cells ectopically expressing FynT, we demonstrate that only LR-associated, kinase-active (Y505F)Lck reciprocally co-immunoprecipitates with and activates Fyn. Mutational analyses revealed a profound reduction in the formation of Lck-Fyn complexes and Fyn activation, using kinase domain mutants K273R and Y394F of (Y505F)Lck, both of which have profoundly compromised kinase activity. The only kinase-active Lck mutants tested that revealed impaired physical and enzymatic engagement with Fyn were those involving truncation of the C-terminal sequence YQPQP. Remarkably, sequential truncation of YQPQP resulted in an increasing reduction of kinase-active Lck partitioning to LR, in both fibroblasts and T cells. This in turn correlated with an ablation of the capacity of these truncates to enhance TcR-mediated interleukin-2 production. Thus, Lck-dependent Fyn activation is predicated by proximity-mediated transphosphorylation of the Fyn kinase domain, and targeting kinase-active Lck to LR is dependent on the C-terminal sequence QPQP.

摘要

调节Lck和Fyn激活及功能发挥的机制是T细胞抗原受体(TcR)复合物引发的最近端信号事件产生过程的核心。最近的研究结果表明,脂筏(LR)将Lck和Fyn分隔开,并在它们激活的时间和空间协调中发挥着重要作用。具体而言,TcR-CD4共聚集诱导的LR外的Lck激活导致Lck转位至LR,随后驻留在LR中的Fyn被激活。在此,我们报告了一项结构-功能分析,旨在阐明支持Lck定位于LR及其激活共定位Fyn能力的机制。利用异位表达FynT的NIH 3T3细胞,我们证明只有与LR相关的、激酶活性的(Y505F)Lck能与Fyn相互免疫共沉淀并激活Fyn。突变分析显示,使用(Y505F)Lck的激酶结构域突变体K273R和Y394F时,Lck-Fyn复合物的形成和Fyn激活显著减少,这两种突变体的激酶活性均受到严重损害。所测试的唯一显示与Fyn的物理和酶促相互作用受损的激酶活性Lck突变体是那些涉及C末端序列YQPQP截断的突变体。值得注意的是,在成纤维细胞和T细胞中,YQPQP的顺序截断导致激酶活性Lck定位于LR的减少越来越明显。这反过来又与这些截断体增强TcR介导的白细胞介素-2产生的能力丧失相关。因此,Lck依赖性Fyn激活取决于Fyn激酶结构域的邻近介导的反式磷酸化,而将激酶活性Lck靶向至LR取决于C末端序列QPQP。

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