首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structure of the interleukin-2 tyrosine kinase Src homology 2 domain; comparison between X-ray and NMR-derived structures
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Structure of the interleukin-2 tyrosine kinase Src homology 2 domain; comparison between X-ray and NMR-derived structures

机译:白介素2酪氨酸激酶Src同源2域的结构; X射线和NMR衍生结构之间的比较

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摘要

The crystal structure of the interleukin-2 tyrosine kinase Src homology domain (Itk SH2) is described and it is found that unlike in studies of this domain using NMR spectroscopy, cis–trans-prolyl isomerization is not readily detected in the crystal structure. Based on similarities between the Itk SH2 crystal form and the cis form of the Itk SH2 NMR structure, it is concluded that it is likely that the prolyl imide bond at least in part adopts the cis conformation in the crystal form. However, the lack of high-resolution data and the dynamic nature of the proline-containing loop mean that the precise imide-bond conformation cannot be determined and prolyl cis–trans isomerization in the crystal cannot be ruled out. Given the preponderance of structures that have been solved by X-ray crystallography in the Protein Data Bank, this result supports the notion that prolyl isomerization in folded proteins has been underestimated among known structures. Interestingly, while the precise status of the proline residue is ambiguous, Itk SH2 crystallizes as a domain-swapped dimer. The domain-swapped structure of Itk SH2 is similar to the domain-swapped SH2 domains of Grb2 and Nck, with domain swapping occurring at the β-meander region of all three SH2 domains. Thus, for Itk SH2 structural analysis by NMR spectroscopy and X-ray crystallography revealed very different structural features: proline isomerization versus domain-swapped dimerization, respectively.
机译:描述了白介素2酪氨酸激酶Src同源结构域(Itk SH2)的晶体结构,发现与使用NMR光谱研究该结构域不同,在晶体结构中不容易检测到顺式-反-脯氨酰异构化。基于Itk SH2晶体形式和Itk SH2 NMR结构的顺式形式之间的相似性,得出的结论是,脯氨酰酰亚胺键可能至少部分采用晶体形式的顺式构象。然而,缺乏高分辨率数据和含脯氨酸的环的动力学性质意味着无法确定精确的酰亚胺键构象,也不能排除晶体中脯氨酰顺反异构化。考虑到蛋白质数据库中X射线晶体学已解决的结构占优势,这一结果支持了这样一种观点,即折叠蛋白中的脯氨酰异构化在已知结构中被低估了。有趣的是,当脯氨酸残基的精确状态不明确时,Itk SH2结晶为域交换的二聚体。 Itk SH2的结构域交换结构类似于Grb2和Nck的结构域交换SH2结构域,结构域交换发生在所有三个SH2结构域的β弯道区域。因此,对于Itk SH2,通过NMR光谱和X射线晶体学进行结构分析显示出非常不同的结构特征:脯氨酸异构化与结构域交换二聚化。

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