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嵌合单链Fv-Syk直接激活T细胞可促进Syk与Cbl结合及Cbl磷酸化。

Direct T cell activation by chimeric single chain Fv-Syk promotes Syk-Cbl association and Cbl phosphorylation.

作者信息

Fitzer-Attas C J, Schindler D G, Waks T, Eshhar Z

机构信息

Department of Immunology, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

J Biol Chem. 1997 Mar 28;272(13):8551-7. doi: 10.1074/jbc.272.13.8551.

Abstract

The protein tyrosine kinase Syk is activated upon engagement of immune recognition receptors. We have focused on the identification of signaling elements immediately downstream to Syk in the pathway leading to T cell activation. To circumvent T cell receptor (TCR). CD3 activation of Src family kinases, we constructed a signaling molecule with an extracellular single chain Fv of an anti-TNP antibody, attached via a transmembrane region to Syk (scFv-Syk). In a murine T cell hybridoma, direct aggregation of chimeric Syk with antigen culminates in interleukin-2 production and target cell lysis. Initially, it causes an increase in the association between scFv-Syk and the cytosolic protein Cbl and subsequently promotes tyrosine phosphorylation of Cbl. Interestingly, although both Cbl and phospholipase C-gamma (PLC-gamma) are phosphorylated in this hybridoma upon TCR.CD3 cross-linking, these two events are uncoupled in scFv-Syk-transfected cells, in which we were unable to detect antigen-driven PLC-gamma phosphorylation. These results support a model in which Syk can initiate and directly activate the T cell's signaling machinery and position Cbl as a primary tyrosine kinase substrate in this pathway. Furthermore, for efficient PLC-gamma phosphorylation to occur in these cells, the combined actions of different tyrosine kinase families may be required.

摘要

蛋白酪氨酸激酶Syk在免疫识别受体结合后被激活。我们专注于在导致T细胞激活的信号通路中,鉴定Syk下游紧邻的信号元件。为了规避T细胞受体(TCR)-CD3对Src家族激酶的激活,我们构建了一种信号分子,其具有抗TNP抗体的细胞外单链Fv,通过跨膜区域与Syk相连(scFv-Syk)。在小鼠T细胞杂交瘤中,嵌合Syk与抗原的直接聚集最终导致白细胞介素-2的产生和靶细胞裂解。最初,它会导致scFv-Syk与胞质蛋白Cbl之间的结合增加,随后促进Cbl的酪氨酸磷酸化。有趣的是,尽管在TCR-CD3交联时,该杂交瘤中的Cbl和磷脂酶C-γ(PLC-γ)都会被磷酸化,但在转染了scFv-Syk的细胞中,这两个事件是解偶联的,在这些细胞中我们无法检测到抗原驱动的PLC-γ磷酸化。这些结果支持了一个模型,即Syk可以启动并直接激活T细胞的信号传导机制,并将Cbl定位为该途径中的主要酪氨酸激酶底物。此外,为了使这些细胞中发生有效的PLC-γ磷酸化,可能需要不同酪氨酸激酶家族的联合作用。

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