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Characterization of polyubiquitin chain structure by middle-down mass spectrometry

机译:中下质谱法表征聚泛素链结构

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Ubiquitin (Ub) is a 76 amino acid polypeptide that modifies a wide range of proteins in the types of monomer or polymers, and functional consequence of ubiquitination is modulated by the length and topologies of polyUb chains. Whereas polyUb chains are usually analyzed by fully trypsin digestion and mass spectrometry (MS), we present here a middle-down strategy to characterize the structure of polyUb chains by high-resolution mass spectrometry (MS). Under optimized condition, native folded polyUb is partially trypsinized exclusively at the R74 residue, generating a large Ub fragment (1 - 74 residues termed UbR74) and its ubiquitinated form with a diglycine tag (UbR74-GG). The molar ratio between UbR74 and UbR74-GG reflects the length of homogeneous polyUb chains (i.e., 1: 1 for the dimer, 1:2 for the trimer, 1:3 for the tetramer, and so on). Moreover, lysine residues in ubiquitin used for chain linkages are detectable by MS/MS ;and MS/MS/MS of large GG-tagged Ub hugments. The strategy was validated using a number of ubiquitin polymers, including K48-linked human di-Ub, K63-linked human tetra-Ub, as well as His-tagged polyUb chains purified from yeast under native condition. The potential of this strategy to analyze polyUb chains with mixed linkages (e.g., forked chains) is also discussed. Together, this middle-down MS strategy provides a novel complementary method for studying the length and linkages of complex polyUb chain structures.
机译:泛素(Ub)是一种76个氨基酸的多肽,可修饰各种类型的单体或聚合物中的蛋白质,泛素化的功能结果受polyUb链的长度和拓扑结构调节。尽管通常通过完全胰蛋白酶消化和质谱分析(MS)分析polyUb链,但在此我们提出一种中下策略,通过高分辨率质谱(MS)表征polyUb链的结构。在优化条件下,天然折叠的polyUb仅在R74残基处被部分胰蛋白酶消化,生成一个大的Ub片段(1-74个残基称为UbR74)及其泛素化形式并带有双甘氨酸标签(UbR74-GG)。 UbR74和UbR74-GG之间的摩尔比反映了均一的多聚Ub链的长度(即,对于二聚体是1:1,对于三聚体是1:2,对于四聚体是1:3,依此类推)。此外,MS / MS和大型GG标签的Ub拥抱的MS / MS / MS均可检测泛素中用于链键连接的赖氨酸残基。该策略已使用多种泛素聚合物进行了验证,包括K48连接的人di-Ub,K63连接的人tetra-Ub,以及在自然条件下从酵母中纯化得到的带有His标签的polyUb链。还讨论了这种策略分析具有混合链接的polyUb链的潜力(例如,分叉链)。总之,这种从中到下的质谱策略提供了一种新颖的互补方法,用于研究复杂的polyUb链结构的长度和连接。

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