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水分子在I类和II类肽与Fyn酪氨酸激酶SH3结构域结合中的作用。

The role of water molecules in the binding of class I and II peptides to the SH3 domain of the Fyn tyrosine kinase.

作者信息

Camara-Artigas Ana, Ortiz-Salmeron Emilia, Andujar-Sánchez Montserrrat, Bacarizo Julio, Martin-Garcia Jose Manuel

机构信息

Department of Chemistry and Physics, University of Almería, Agrifood Campus of International Excellence (ceiA3), Carretera de Sacramento, 04120 Almeria, Spain.

School of Molecular Sciences, Arizona State University, Tempe, AZ 85287, USA.

出版信息

Acta Crystallogr F Struct Biol Commun. 2016 Sep;72(Pt 9):707-12. doi: 10.1107/S2053230X16012310. Epub 2016 Aug 26.

Abstract

Interactions of proline-rich motifs with SH3 domains are present in signal transduction and other important cell processes. Analysis of structural and thermodynamic data suggest a relevant role of water molecules in these protein-protein interactions. To determine whether or not the SH3 domain of the Fyn tyrosine kinase shows the same behaviour, the crystal structures of its complexes with two high-affinity synthetic peptides, VSL12 and APP12, which are class I and II peptides, respectively, have been solved. In the class I complexes two water molecules were found at the binding interface that were not present in the class II complexes. The structures suggest a role of these water molecules in facilitating conformational changes in the SH3 domain to allow the binding of the class I or II peptides. In the third binding pocket these changes modify the cation-π and salt-bridge interactions that determine the affinity of the binding. Comparison of the water molecules involved in the binding of the peptides with previous reported hydration spots suggests a different pattern for the SH3 domains of the Src tyrosine kinase family.

摘要

富含脯氨酸基序与SH3结构域的相互作用存在于信号转导和其他重要的细胞过程中。对结构和热力学数据的分析表明,水分子在这些蛋白质-蛋白质相互作用中具有重要作用。为了确定Fyn酪氨酸激酶的SH3结构域是否表现出相同的行为,已经解析了其与两种高亲和力合成肽VSL12和APP12(分别为I类和II类肽)形成的复合物的晶体结构。在I类复合物中,在结合界面发现了两个水分子,而在II类复合物中则不存在。这些结构表明,这些水分子在促进SH3结构域的构象变化以允许I类或II类肽结合方面发挥作用。在第三个结合口袋中,这些变化改变了决定结合亲和力的阳离子-π和盐桥相互作用。将参与肽结合的水分子与先前报道的水化位点进行比较,发现Src酪氨酸激酶家族的SH3结构域具有不同的模式。

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