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基于双泛素的核磁共振分析:赖氨酸6连接的双泛素与UBXN1的泛素相关结构域之间的相互作用

Diubiquitin-Based NMR Analysis: Interactions Between Lys6-Linked diUb and UBA Domain of UBXN1.

作者信息

Shahul Hameed Dharjath, van Tilburg Gabrielle B A, Merkx Remco, Flierman Dennis, Wienk Hans, El Oualid Farid, Hofmann Kay, Boelens Rolf, Ovaa Huib

机构信息

Department of Cell Biology II, The Netherlands Cancer Institute, Amsterdam, Netherlands.

Department of Cell and Chemical Biology, Oncode Institute, Leiden University Medical Centre, Leiden, Netherlands.

出版信息

Front Chem. 2020 Jan 22;7:921. doi: 10.3389/fchem.2019.00921. eCollection 2019.

Abstract

Ubiquitination is a process in which a protein is modified by the covalent attachment of the C-terminal carboxylic acid of ubiquitin (Ub) to the ε-amine of lysine or N-terminal methionine residue of a substrate protein or another Ub molecule. Each of the seven internal lysine residues and the N-terminal methionine residue of Ub can be linked to the C-terminus of another Ub moiety to form 8 distinct Ub linkages and the resulting differences in linkage types elicit different Ub signaling pathways. Cellular responses are triggered when proteins containing ubiquitin-binding domains (UBDs) recognize and bind to specific polyUb linkage types. To get more insight into the differences between polyUb chains, all of the seven lysine-linked di-ubiquitin molecules (diUbs) were prepared and used as a model to study their structural conformations in solution using NMR spectroscopy. We report the synthesis of diUb molecules, fully N-labeled on the distal (N-terminal) Ub moiety and revealed their structural orientation with respect to the proximal Ub. As expected, the diUb molecules exist in different conformations in solution, with multiple conformations known to exist for K6-, K48-, and K63-linked diUb molecules. These multiple conformations allow structural flexibility in binding with UBDs thereby inducing unique responses. One of the well-known but poorly understood UBD-Ub interaction is the recognition of K6 polyubiquitin by the ubiquitin-associated (UBA) domain of UBXN1 in the BRCA-mediated DNA repair pathway. Using our synthetic N-labeled diUbs, we establish here how a C-terminally extended UBA domain of UBXN1 confers specificity to K6 diUb while the non-extended version of the domain does not show any linkage preference. We show that the two distinct conformations of K6 diUb that exist in solution converge into a single conformation upon binding to this extended form of the UBA domain of the UBXN1 protein. It is likely that more of such extended UBA domains exist in nature and can contribute to linkage-specificity in Ub signaling. The isotopically labeled diUb compounds described here and the use of NMR to study their interactions with relevant partner molecules will help accelerate our understanding of Ub signaling pathways.

摘要

泛素化是一个过程,其中泛素(Ub)的C末端羧酸通过共价连接到底物蛋白或另一个Ub分子的赖氨酸的ε-氨基或N末端甲硫氨酸残基上,从而对蛋白质进行修饰。Ub的七个内部赖氨酸残基和N末端甲硫氨酸残基中的每一个都可以与另一个Ub部分的C末端相连,形成8种不同的Ub连接,连接类型的差异引发不同的Ub信号通路。当含有泛素结合结构域(UBD)的蛋白质识别并结合特定的多聚泛素连接类型时,细胞反应就会被触发。为了更深入了解多聚泛素链之间的差异,制备了所有七个赖氨酸连接的二聚泛素分子(diUbs),并将其用作模型,使用核磁共振光谱研究它们在溶液中的结构构象。我们报告了在远端(N末端)Ub部分完全N标记的diUb分子的合成,并揭示了它们相对于近端Ub的结构取向。正如预期的那样,diUb分子在溶液中以不同的构象存在,已知K6-、K48-和K63-连接的diUb分子存在多种构象。这些多种构象允许在与UBD结合时具有结构灵活性,从而诱导独特反应。在BRCA介导的DNA修复途径中,UBXN1的泛素相关(UBA)结构域对K6多聚泛素的识别作用是一种众所周知但了解甚少的UBD-Ub相互作用。使用我们合成的N标记diUbs,我们在此确定了UBXN1的C末端延伸UBA结构域如何赋予K6 diUb特异性,而该结构域的非延伸版本则没有显示出任何连接偏好。我们表明,溶液中存在的K6 diUb的两种不同构象在与UBXN1蛋白的这种延伸形式的UBA结构域结合时会汇聚成单一构象。自然界中可能存在更多这样的延伸UBA结构域,并且可以在Ub信号传导中促成连接特异性。本文所述的同位素标记diUb化合物以及使用核磁共振研究它们与相关伴侣分子的相互作用将有助于加速我们对Ub信号通路的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbd4/6987245/9e481e21dbc8/fchem-07-00921-g0001.jpg

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