Lee C H, Kominos D, Jacques S, Margolis B, Schlessinger J, Shoelson S E, Kuriyan J
Laboratory of Molecular Biophysics, Rockefeller University, New York, NY 10021.
Structure. 1994 May 15;2(5):423-38. doi: 10.1016/s0969-2126(00)00044-7.
Src homology 2 (SH2) domains bind to phosphotyrosine residues in a sequence-specific manner, and thereby couple tyrosine phosphorylation to changes in the localization or catalytic activity of signal transducing molecules. Current understanding of SH2 specificity is based on the structures of SH2-peptide complexes of the closely-related Src and Lck tyrosine kinases. The tyrosine phosphatase Syp contains two SH2 domains that are relatively divergent from those of the tyrosine kinases, with distinct target specificities, and is thus well suited for structural studies aimed at extending our understanding of SH2 specificity.
Crystal structures of the amino-terminal SH2 domain of Syp in separate complexes with two high-affinity peptides, in complex with a non-specific peptide and in the uncomplexed form have been determined at between 2 A and 3 A resolution. The structure of the SH2 domain and the mode of high-affinity peptide binding is essentially similar to that seen in the Src and Lck structures. However, the binding interface is more extensive in Syp.
Most SH2 targets have hydrophobic residues at the third position following the phosphotyrosine, and the Syp structure confirms that the peptide is anchored to the SH2 surface by this residue and by the phosphotyrosine. In addition, the Syp structure has revealed that sequence specificity can extend across the five residues following the phosphotyrosine, and has shown how the SH2 domain's surface topography can be altered with resulting changes in specificity, while conserving the structure of the central core of the domain.
Src同源2(SH2)结构域以序列特异性方式结合磷酸酪氨酸残基,从而将酪氨酸磷酸化与信号转导分子的定位或催化活性变化联系起来。目前对SH2特异性的理解基于密切相关的Src和Lck酪氨酸激酶的SH2 - 肽复合物的结构。酪氨酸磷酸酶Syp含有两个与酪氨酸激酶的SH2结构域相对不同的SH2结构域,具有不同的靶标特异性,因此非常适合用于旨在扩展我们对SH2特异性理解的结构研究。
已确定Syp氨基末端SH2结构域与两种高亲和力肽分别形成复合物、与非特异性肽形成复合物以及未结合形式下的晶体结构,分辨率在2 Å至3 Å之间。SH2结构域的结构和高亲和力肽的结合模式与Src和Lck结构中的基本相似。然而,Syp中的结合界面更广泛。
大多数SH2靶标在磷酸酪氨酸后的第三位具有疏水残基,Syp结构证实肽通过该残基和磷酸酪氨酸锚定在SH2表面。此外,Syp结构揭示了序列特异性可以延伸到磷酸酪氨酸后的五个残基,并且展示了SH2结构域的表面拓扑结构如何随着特异性的变化而改变,同时保留该结构域中心核心的结构。