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Defining the Disulfide Bonds of Insulin-like Growth Factor-binding Protein-5 by Tandem Mass Spectrometry with Electron Transfer Dissociation and Collision-induced Dissociation

机译:电子转移解离与碰撞诱导解离串联质谱法测定胰岛素样生长因子结合蛋白5的二硫键

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摘要

The six high-affinity insulin-like growth factor-binding proteins (IGFBPs) comprise a conserved family of secreted molecules that modulate IGF actions by regulating their half-life and access to signaling receptors, and also exert biological effects that are independent of IGF binding. IGFBPs are composed of cysteine-rich amino- (N-) and carboxyl- (C-) terminal domains, along with a cysteine-poor central linker segment. IGFBP-5 is the most conserved IGFBP, and contains 18 cysteines, but only 2 of 9 putative disulfide bonds have been mapped to date. Using a mass spectrometry (MS)-based strategy combining sequential electron transfer dissociation (ETD) and collision-induced dissociation (CID) steps, in which ETD fragmentation preferentially induces cleavage of disulfide bonds, and CID provides exact disulfide linkage assignments between liberated peptides, we now have definitively mapped 5 disulfide bonds in IGFBP-5. In addition, in conjunction with ab initio molecular modeling we are able to assign the other 4 disulfide linkages to within a GCGCCXXC motif that is conserved in five IGFBPs. Because of the nature of ETD fragmentation MS experiments were performed without chemical reduction of IGFBP-5. Our results not only establish a disulfide bond map of IGFBP-5 but also define a general approach that takes advantage of the specificity of ETD and the scalability of tandem MS, and the predictive power of ab initio molecular modeling to characterize unknown disulfide linkages in proteins.
机译:六个高亲和力的胰岛素样生长因子结合蛋白(IGFBPs)包含一个保守的分泌分子家族,通过调节其半衰期和对信号受体的访问来调节IGF的作用,并发挥与IGF结合无关的生物学效应。 IGFBP由富含半胱氨酸的氨基(N-)和羧基(C-)末端结构域,以及缺乏半胱氨酸的中央连接区组成。 IGFBP-5是最保守的IGFBP,包含18个半胱氨酸,但迄今为止,仅9个假定的二硫键中的2个已作图。使用结合顺序电子转移解离(ETD)和碰撞诱导解离(CID)步骤的基于质谱(MS)的策略,其中ETD片段化优先诱导二硫键的裂解,而CID在释放的肽之间提供精确的二硫键分配,我们现在已经确定地映射了IGFBP-5中的5个二硫键。此外,结合从头开始的分子建模,我们能够将其他4个二硫键分配到在五个IGFBP中保守的GCGCCXXC基序中。由于ETD片段化的性质,因此进行了MS实验,而没有化学还原IGFBP-5。我们的结果不仅建立了IGFBP-5的二硫键图谱,而且定义了一种利用ETD的特异性和串联MS的可扩展性以及从头算分子模型预测蛋白质中未知二硫键的预测能力的通用方法。 。

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