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ZAP-70对基于酪氨酸的T细胞受体激活基序的结合特异性:ZAP-70的串联SH2结构域以不同亲和力结合不同的基于酪氨酸的激活基序。

ZAP-70 binding specificity to T cell receptor tyrosine-based activation motifs: the tandem SH2 domains of ZAP-70 bind distinct tyrosine-based activation motifs with varying affinity.

作者信息

Isakov N, Wange R L, Burgess W H, Watts J D, Aebersold R, Samelson L E

机构信息

Cell Biology and Metabolism Branch, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Exp Med. 1995 Jan 1;181(1):375-80. doi: 10.1084/jem.181.1.375.

Abstract

Engagement of the T cell antigen receptor (TCR) results in activation of several tyrosine kinases leading to tyrosine phosphorylation of protein substrates and activation of multiple biochemical pathways. TCR-mediated activation of the src-family kinases, Lck and Fyn, results in tyrosine phosphorylation of the TCR zeta and CD3 chains. The site of phosphorylation in these chains is the tyrosine-based activation motif (TAM), a 15-16 amino acid module containing two tyrosine residues. Tyrosine-phosphorylated TAMs serve as targets for binding of the zeta-associated protein (ZAP-70) tyrosine kinase via its tandem SH2 domains. This binding correlates with activation of ZAP-70, a critical event in T cell activation. To further define the structural requirements for ZAP-70 interaction with the TCR, we developed a binding assay using immobilized glutathione S-transferase fusion proteins containing the NH2- and/or COOH-terminal SH2 domains of ZAP-70, and soluble synthetic peptides with the sequence of the cytoplasmic region of the TCR zeta chain (TCR zeta cyt) or individual TCR zeta and CD3 epsilon TAM motifs. Direct binding studies demonstrated that the tandem ZAP-70 SH2 domains bind phosphorylated, but not nonphosphorylated, TCR zeta cyt. The NH2-terminal ZAP-70 SH2 domain also binds to TCR zeta cyt but with 100-fold lower affinity. No binding was observed with the COOH-terminal ZAP-70 SH2 domain. Similar studies demonstrated that the ZAP-70 tandem SH2 domain can bind a TCR zeta 3 TAM peptide in which both tyrosine residues are phosphorylated: Little or no binding was observed with peptides phosphorylated at only one tyrosine residue, or a nonphosphorylated peptide. Binding of the tandem SH2 domains to the other two TCR zeta TAM peptides and to a CD3 epsilon TAM peptide was also observed. All four doubly tyrosine phosphorylated TAM peptides cross-compete with each other for binding to the tandem SH2 domains of ZAP-70. The affinity of these peptides for the tandem SH2 construct demonstrated a hierarchy of TAM zeta 1 > or = TAM zeta 2 > TAM epsilon > or = TAM zeta 3. The results provide further evidence that the ZAP-70 interaction with the TCR requires prior phosphorylation of both tyrosine residues within a TAM motif. Binding of ZAP-70 to phospho-TAMs is notable for the high level of cooperativity between the two SH2 domains, which individually demonstrate low affinity interaction with the ligand. The cooperativity ensures higher affinity for the doubly phosphorylated ligand. Affinity differences of as much as 30-fold indicates a significant specificity of interaction of ZAP-70 SH2 domains for different phospho-TAMs.

摘要

T细胞抗原受体(TCR)的激活会导致多种酪氨酸激酶活化,进而使蛋白质底物发生酪氨酸磷酸化,并激活多条生化途径。TCR介导的src家族激酶Lck和Fyn的激活,会导致TCR ζ链和CD3链的酪氨酸磷酸化。这些链上的磷酸化位点是基于酪氨酸的激活基序(TAM),这是一个包含两个酪氨酸残基的15 - 16个氨基酸的模块。酪氨酸磷酸化的TAM作为ζ相关蛋白(ZAP - 70)酪氨酸激酶通过其串联SH2结构域进行结合的靶点。这种结合与ZAP - 70的激活相关,而ZAP - 70的激活是T细胞激活中的关键事件。为了进一步明确ZAP - 70与TCR相互作用的结构要求,我们开发了一种结合试验,使用固定化的谷胱甘肽S - 转移酶融合蛋白,该蛋白包含ZAP - 70的NH2 - 和/或COOH - 末端SH2结构域,以及具有TCR ζ链胞质区(TCR ζ cyt)序列或单个TCR ζ和CD3 ε TAM基序的可溶性合成肽。直接结合研究表明,ZAP - 70的串联SH2结构域与磷酸化的而非未磷酸化的TCR ζ cyt结合。ZAP - 70的NH2 - 末端SH2结构域也与TCR ζ cyt结合,但亲和力低100倍。未观察到与ZAP - 70的COOH - 末端SH2结构域的结合。类似的研究表明,ZAP - 70串联SH2结构域可以结合两个酪氨酸残基都被磷酸化的TCR ζ 3 TAM肽:对于仅一个酪氨酸残基被磷酸化的肽或未磷酸化的肽,观察到很少或没有结合。还观察到串联SH2结构域与其他两个TCR ζ TAM肽以及CD3 ε TAM肽的结合。所有四个双酪氨酸磷酸化的TAM肽相互竞争与ZAP - 70串联SH2结构域的结合。这些肽对串联SH2构建体的亲和力显示出TAM ζ 1≥TAM ζ 2>TAM ε≥TAM ζ 3的等级关系。结果提供了进一步的证据,即ZAP - 70与TCR的相互作用需要TAM基序内的两个酪氨酸残基预先磷酸化。ZAP - 70与磷酸化TAM的结合以两个SH2结构域之间的高度协同性为显著特征,这两个结构域单独与配体的相互作用亲和力较低。这种协同性确保了对双磷酸化配体具有更高的亲和力。高达30倍的亲和力差异表明ZAP - 70 SH2结构域与不同磷酸化TAM相互作用具有显著的特异性。

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