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收支平衡:N 端和 C 端对于 CIN85 的第三个 SH3 结构域的结构、稳定性和功能的重要性。

Making ends meet: the importance of the N- and C-termini for the structure, stability, and function of the third SH3 domain of CIN85.

机构信息

Department of Biochemistry, University of Leicester, Lancaster Road, Leicester LE1 9HN, U.K.

出版信息

Biochemistry. 2011 May 10;50(18):3649-59. doi: 10.1021/bi1019644. Epub 2011 Apr 12.

Abstract

SH3 domains are common structure, interaction, and regulation modules found in more than 200 human proteins. In this report, we studied the third SH3 domain from the human CIN85 adaptor protein, which plays an important role in both receptor tyrosine kinase downregulation and phosphatidylinositol 3 kinase inhibition. The structure of this domain includes an additional 90° kink after the last canonical β-strand and features unusual interactions between the termini well outside the boundaries of the standard SH3 domain definition. The extended portions of the domain are well-structured and held together entirely by side chain-side chain interactions. Extensive expression screening showed that these additional contacts provide significantly increased stability to the domain. A similar 90° kink is found in only one other SH3 domain structure, while side chain contacts linking the termini have never been described before. As a result of the increased size of CIN85 SH3 domain C, the proximal proline rich region is positioned such that a possible intramolecular interaction is structurally inhibited. Using the key interactions of the termini as the basis for sequence analysis allowed the identification of several SH3 domains with flanking sequences that could adopt similar structures. This work illustrates the importance of careful experimental analysis of domain boundaries even for a well-characterized fold such as the SH3 domain.

摘要

SH3 结构域是一种常见的结构、相互作用和调节模块,存在于 200 多种人类蛋白质中。在本报告中,我们研究了人类 CIN85 衔接蛋白的第三个 SH3 结构域,该结构域在受体酪氨酸激酶下调和磷酸肌醇 3 激酶抑制中发挥重要作用。该结构域的结构包括在最后一个典型的β-折叠之后的额外 90°扭曲,并且特征在于末端之间的不寻常相互作用,远远超出了标准 SH3 结构域定义的范围。该结构域的扩展部分结构良好,完全由侧链-侧链相互作用保持在一起。广泛的表达筛选表明,这些额外的接触为该结构域提供了显著增加的稳定性。只有另一个 SH3 结构域结构中存在类似的 90°扭曲,而连接末端的侧链接触以前从未被描述过。由于 CIN85 SH3 结构域 C 的大小增加,近端富含脯氨酸的区域的位置使得可能的分子内相互作用在结构上受到抑制。使用末端的关键相互作用作为序列分析的基础,鉴定了几个具有侧翼序列的 SH3 结构域,这些侧翼序列可能采用类似的结构。这项工作说明了即使对于像 SH3 结构域这样的特征明确的折叠,仔细分析结构域边界的实验分析也是非常重要的。

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