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ZAP-70无配体SH2结构域的晶体结构和核磁共振研究:两辆自行车而非串联结构。

Crystal structure and NMR studies of the apo SH2 domains of ZAP-70: two bikes rather than a tandem.

作者信息

Folmer Rutger H A, Geschwindner Stefan, Xue Yafeng

机构信息

Structural Chemistry Laboratory, AstraZeneca R&D Mölndal, S-431 83 Mölndal, Sweden.

出版信息

Biochemistry. 2002 Dec 3;41(48):14176-84. doi: 10.1021/bi026465e.

Abstract

The protein kinase ZAP-70 is involved in T-cell activation, and interacts with tyrosine-phosphorylated peptide sequences known as immunoreceptor tyrosine activation motifs (ITAMs), which are present in three of the subunits of the T-cell receptor. We have studied the tandem SH2 (tSH2) domains of ZAP-70, by both X-ray and NMR. Here, we present the crystal structure of the apoprotein, i.e., the tSH2 domain in the absence of ITAM. Comparison with the previously reported complex structure reveals that binding to the ITAM peptide induces surprisingly large movements between the two SH2 domains and within the actual binding sites. The conformation of the ITAM-free protein is partly governed by a hydrophobic cluster between the linker region and the C-terminal SH2 domain. Our data suggest that the two SH2 domains are able to undergo large interdomain movements. The proposed relative flexibility of the SH2 domains is further supported by the finding that no NMR signals could be detected for the two helices connecting the SH2 domains; these are likely to be broadened beyond detection due to conformational exchange. It is likely that this conformational reorientation induced by ITAM binding is the main signaling event activating the kinase domain in ZAP-70. Another NMR observation was that the N-terminal SH2 domain could bind tetrapeptides derived from the ITAM sequence, apparently without the need to interact with the C-terminal domain. In contrast, the C-terminal domain has little affinity for tetrapeptides. The opposite situation is true for binding to plain phosphotyrosine, where the C-terminal domain has a higher affinity. Distinct features in the crystal structure, showing the interdependence of both domains, explain these binding data.

摘要

蛋白激酶ZAP-70参与T细胞活化,并与称为免疫受体酪氨酸激活基序(ITAM)的酪氨酸磷酸化肽序列相互作用,ITAM存在于T细胞受体的三个亚基中。我们通过X射线和核磁共振对ZAP-70的串联SH2(tSH2)结构域进行了研究。在此,我们展示了脱辅基蛋白的晶体结构,即不存在ITAM时的tSH2结构域。与先前报道的复合物结构比较表明,与ITAM肽结合会在两个SH2结构域之间以及实际结合位点内引起惊人的大移动。无ITAM蛋白的构象部分受连接区和C端SH2结构域之间的疏水簇控制。我们的数据表明,两个SH2结构域能够进行大的结构域间移动。连接SH2结构域的两个螺旋未检测到核磁共振信号,这一发现进一步支持了所提出的SH2结构域的相对灵活性;由于构象交换,这些信号可能变宽而无法检测到。很可能ITAM结合诱导的这种构象重排是激活ZAP-70激酶结构域的主要信号事件。另一个核磁共振观察结果是,N端SH2结构域可以结合源自ITAM序列的四肽,显然无需与C端结构域相互作用。相反,C端结构域对四肽的亲和力很小。对于与普通磷酸酪氨酸的结合,情况则相反,C端结构域具有更高的亲和力。晶体结构中的独特特征显示了两个结构域的相互依赖性,解释了这些结合数据。

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