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通过铰链环诱变理解c-Src SH3结构域中的结构域交换

Understanding domain swapping in the c-Src SH3 domain through hinge-loop mutagenesis.

作者信息

Salinas-Garcia M Carmen, Plaza-Garrido Marina, Martinez Jose C, Camara-Artigas Ana

机构信息

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

Department of Physical Chemistry, University of Granada, Avenida Fuentenueva s/n, 18071 Granada, Spain.

出版信息

Acta Crystallogr D Struct Biol. 2025 Sep 1;81(Pt 9):492-510. doi: 10.1107/S2059798325006977. Epub 2025 Aug 27.

Abstract

The c-Src SH3 domain is one of the best-characterized modular domains from a biophysical and structural point of view. This SH3 domain displays noncanonical alternative folding, forming 3D domain-swapped oligomers and amyloid fibrils. These features make this small protein an ideal model for studying these phenomena. Residues in the regions that favour unfolding of the monomer and those in the hinge loop have been deeply studied in proteins undergoing 3D domain swapping. To study the role of these residues in the unfolding of the c-Src SH3 domain, we have constructed several chimeric proteins by interchanging residues in the RT and n-Src loops between the c-Src SH3 and Abl SH3 domains. The RT (the region between β1 and β2) and n-Src (the region between β2 and β3) loops create two sides of the shallow hydrophobic groove where proline-rich motif sequences bind to the SH3 domain. In addition to the structural information, we have performed a biophysical characterization of these chimeric constructs. The c-Src SH3 domain bearing the loops of the Abl SH3 shows minor changes in stability. Interestingly, these replacements do not prevent the formation of domain-swapped dimers. However, the interchange of one or two loops within the Abl SH3 domain produces a noticeable reduction in its stability but does not promote the formation of 3D domain-swapped oligomers. Thus, our results indicate that although the composition of the hinge loop is likely to play a role in the interchange of structural elements to form the intertwined dimers, it is not the sole driving force in their formation.

摘要

从生物物理和结构的角度来看,c-Src SH3结构域是特征最为明确的模块化结构域之一。这个SH3结构域呈现出非经典的交替折叠,形成三维结构域交换寡聚体和淀粉样原纤维。这些特性使这个小蛋白成为研究这些现象的理想模型。在经历三维结构域交换的蛋白质中,有利于单体展开的区域中的残基以及铰链环中的残基都得到了深入研究。为了研究这些残基在c-Src SH3结构域展开过程中的作用,我们通过交换c-Src SH3结构域和Abl SH3结构域的RT环和n-Src环中的残基构建了几种嵌合蛋白。RT环(β1和β2之间的区域)和n-Src环(β2和β3之间的区域)形成了浅疏水凹槽的两侧,富含脯氨酸的基序序列与SH3结构域结合于此。除了结构信息外,我们还对这些嵌合构建体进行了生物物理表征。带有Abl SH3环的c-Src SH3结构域在稳定性上有微小变化。有趣的是,这些替换并不妨碍结构域交换二聚体的形成。然而,在Abl SH3结构域内交换一个或两个环会使其稳定性显著降低,但不会促进三维结构域交换寡聚体的形成。因此,我们的结果表明,尽管铰链环的组成可能在结构元件的交换以形成交织二聚体中起作用,但它不是其形成的唯一驱动力。

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