Neumeister E N, Zhu Y, Richard S, Terhorst C, Chan A C, Shaw A S
Center for Immunology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Mol Cell Biol. 1995 Jun;15(6):3171-8. doi: 10.1128/MCB.15.6.3171.
ZAP-70 is a protein tyrosine kinase thought to play a critical role in T-cell receptor (TCR) signal transduction. During T-cell activation, ZAP-70 binds to a conserved signalling motif known as the immune receptor tyrosine activating motif (ITAM) and becomes tyrosine phosphorylated. To determine whether binding of ZAP-70 to the phosphorylated ITAM was able to activate its kinase activity, we measured the kinase activity of ZAP-70 both when it was bound and when it was unbound to phosphorylated TCR subunits. The ability of ZAP-70 to phosphorylate itself, but not exogenous substrates, was enhanced when it was bound to the tyrosine-phosphorylated TCR zeta and eta chains or to a construct that contained duplicated epsilon ITAMs. No enhanced ZAP-70 autophosphorylation was noted when it was bound to tyrosine-phosphorylated CD3 gamma or epsilon. In addition, autophosphorylation of ZAP-70 when bound to zeta or eta resulted in the generation of multiple distinct ZAP-70 phosphorylated tyrosine residues which had the capacity to bind the SH2 domains of fyn, lck, GAP, and abl. As the effect was noted only when ZAP-70 was bound to TCR subunits containing multiple ITAMs, we propose that one of the roles of the tandem ITAMs is to facilitate the autophosphorylation of ZAP-70. Tyrosine-phosphorylated ZAP-70 then mediates downstream signalling by recruiting SH2 domain-containing signalling proteins.
ZAP-70是一种蛋白酪氨酸激酶,被认为在T细胞受体(TCR)信号转导中起关键作用。在T细胞活化过程中,ZAP-70与一种称为免疫受体酪氨酸活化基序(ITAM)的保守信号基序结合,并发生酪氨酸磷酸化。为了确定ZAP-70与磷酸化ITAM的结合是否能够激活其激酶活性,我们测量了ZAP-70在结合和未结合磷酸化TCR亚基时的激酶活性。当ZAP-70与酪氨酸磷酸化的TCR ζ链和η链或与包含重复ε ITAM的构建体结合时,其自身磷酸化能力增强,但对外源底物的磷酸化能力未增强。当ZAP-70与酪氨酸磷酸化的CD3 γ或ε结合时,未观察到其自身磷酸化增强。此外,ZAP-70与ζ或η结合时的自身磷酸化导致产生多个不同的ZAP-70磷酸化酪氨酸残基,这些残基能够结合fyn、lck、GAP和abl的SH2结构域。由于仅在ZAP-70与含有多个ITAM的TCR亚基结合时才观察到这种效应,我们提出串联ITAM的作用之一是促进ZAP-7自身磷酸化。酪氨酸磷酸化的ZAP-70然后通过招募含SH2结构域的信号蛋白来介导下游信号传导。