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与两种膦酰肽复合的p56lck的SH2结构域的晶体结构表明存在一个门控肽结合位点。

The crystal structures of the SH2 domain of p56lck complexed with two phosphonopeptides suggest a gated peptide binding site.

作者信息

Mikol V, Baumann G, Keller T H, Manning U, Zurini M G

机构信息

Preclinical Research, Sandoz Pharma AG, CH-4002, Basel, Switzerland.

出版信息

J Mol Biol. 1995 Feb 17;246(2):344-55. doi: 10.1006/jmbi.1994.0089.

Abstract

Src homology-2 (SH2) domains are protein modules found within a wide variety of cytoplasmic signalling molecules that bind with high affinity to phosphotyrosyl-containing protein sequences. In order to develop SH2 inhibitors that contain phosphotyrosyl analogues resistant to cellular phosphatases, we have solved the crystal structures of the SH2 domain of p56lck in separate complexes with two high-affinity p-(phosphonomethyl)phenylalanine-containing peptides. The structures have been determined at 2.3 A and 2.25 A, and refined to crystallographic R-factors of 19.2% and 18.5%, respectively. The conformation of the SH2 domain of p56lck is essentially similar to that observed in Src and Lck complexed with a phosphotyrosine-containing peptide except in some loops and especially in the loop that connects the second and third beta-strands. This loop, which was involved in hydrogen-bond interactions with the phosphotyrosine moiety, has moved away in the phosphonopeptide complexes as a rigid body by about 7 A on two hinges leaving the tyrosine phosphate mimetic moiety accessible to the solvent. Some intramolecular hydrogen bonds with other residues of the third and fourth beta-strands stabilize an open conformation of the lid, suggesting a flap mechanism for peptide binding.

摘要

Src同源结构域2(SH2)是在多种细胞质信号分子中发现的蛋白质模块,它能与含磷酸酪氨酸的蛋白质序列高亲和力结合。为了开发含有对细胞磷酸酶具有抗性的磷酸酪氨酸类似物的SH2抑制剂,我们解析了p56lck的SH2结构域与两种含对(膦酰甲基)苯丙氨酸的高亲和力肽分别形成的复合物的晶体结构。结构分别在2.3 Å和2.25 Å下确定,并精修至晶体学R因子分别为19.2%和18.5%。p56lck的SH2结构域的构象与Src和Lck与含磷酸酪氨酸肽复合时观察到的构象基本相似,只是在一些环中,特别是在连接第二条和第三条β链的环中有所不同。这个环参与了与磷酸酪氨酸部分的氢键相互作用,在膦酰肽复合物中作为一个刚体在两个铰链上移动了约7 Å,使磷酸酪氨酸模拟部分可被溶剂接触。与第三条和第四条β链的其他残基形成的一些分子内氢键稳定了盖子的开放构象,提示了一种肽结合的瓣状机制。

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