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柔性和受限配体与Grb2 SH2结构域的结合:配体预组织的结构效应。

Binding of flexible and constrained ligands to the Grb2 SH2 domain: structural effects of ligand preorganization.

作者信息

Clements John H, DeLorbe John E, Benfield Aaron P, Martin Stephen F

机构信息

Department of Chemistry and Biochemistry, The Institute of Cellular and Molecular Biology, Texas Institute of Drug and Diagnostic Development, The University of Texas, Austin, Texas 78712, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2010 Oct;66(Pt 10):1101-15. doi: 10.1107/S0907444910035584. Epub 2010 Sep 18.

Abstract

Structures of the Grb2 SH2 domain complexed with a series of pseudopeptides containing flexible (benzyl succinate) and constrained (aryl cyclopropanedicarboxylate) replacements of the phosphotyrosine (pY) residue in tripeptides derived from Ac-pYXN-NH(2) (where X = V, I, E and Q) were elucidated by X-ray crystallography. Complexes of flexible/constrained pairs having the same pY + 1 amino acid were analyzed in order to ascertain what structural differences might be attributed to constraining the phosphotyrosine replacement. In this context, a given structural dissimilarity between complexes was considered to be significant if it was greater than the corresponding difference in complexes coexisting within the same asymmetric unit. The backbone atoms of the domain generally adopt a similar conformation and orientation relative to the ligands in the complexes of each flexible/constrained pair, although there are some significant differences in the relative orientations of several loop regions, most notably in the BC loop that forms part of the binding pocket for the phosphate group in the tyrosine replacements. These variations are greater in the set of complexes of constrained ligands than in the set of complexes of flexible ligands. The constrained ligands make more direct polar contacts to the domain than their flexible counterparts, whereas the more flexible ligand of each pair makes more single-water-mediated contacts to the domain; there was no correlation between the total number of protein-ligand contacts and whether the phosphotyrosine replacement of the ligand was preorganized. The observed differences in hydrophobic interactions between the complexes of each flexible/constrained ligand pair were generally similar to those observed upon comparing such contacts in coexisting complexes. The average adjusted B factors of the backbone atoms of the domain and loop regions are significantly greater in the complexes of constrained ligands than in the complexes of the corresponding flexible ligands, suggesting greater thermal motion in the crystalline state in the former complexes. There was no apparent correlation between variations in crystal packing and observed structural differences or similarities in the complexes of flexible and constrained ligands, but the possibility that crystal packing might result in structural variations cannot be rigorously excluded. Overall, it appears that there are more variations in the three-dimensional structure of the protein and the ligand in complexes of the constrained ligands than in those of their more flexible counterparts.

摘要

通过X射线晶体学阐明了Grb2 SH2结构域与一系列假肽的复合物结构,这些假肽包含来自Ac-pYXN-NH₂(其中X = V、I、E和Q)的三肽中磷酸酪氨酸(pY)残基的柔性(苄基琥珀酸酯)和刚性(芳基环丙烷二羧酸酯)取代。分析具有相同pY + 1氨基酸的柔性/刚性对的复合物,以确定哪些结构差异可能归因于对磷酸酪氨酸取代的限制。在这种情况下,如果复合物之间给定的结构差异大于同一不对称单元中共存复合物的相应差异,则认为该差异是显著的。尽管几个环区域的相对取向存在一些显著差异,最明显的是形成酪氨酸取代中磷酸基团结合口袋一部分的BC环,但该结构域的主链原子在每个柔性/刚性对的复合物中相对于配体通常采用相似的构象和取向。这些差异在刚性配体的复合物组中比在柔性配体的复合物组中更大。刚性配体与结构域形成比其柔性对应物更直接的极性接触,而每对中更柔性的配体与结构域形成更多单水介导的接触;蛋白质-配体接触的总数与配体的磷酸酪氨酸取代是否预先形成无关。在每个柔性/刚性配体对的复合物之间观察到的疏水相互作用差异通常与比较共存复合物中的此类接触时观察到的差异相似。刚性配体的复合物中结构域和环区域主链原子的平均调整B因子明显大于相应柔性配体的复合物,表明前者复合物在晶体状态下具有更大的热运动。晶体堆积的变化与柔性和刚性配体复合物中观察到的结构差异或相似性之间没有明显的相关性,但不能严格排除晶体堆积可能导致结构变化的可能性。总体而言,似乎刚性配体复合物中蛋白质和配体的三维结构变化比其更柔性对应物的复合物更多。

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