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N-Terminal Derivatization with Structures Having High Proton Affinity for Discrimination between Leu and Ile Residues in Peptides by High-Energy Collision-Induced Dissociation

机译:具有高质子亲和力的结构的N端衍生化可通过高能碰撞诱导解离来区分肽中的亮氨酸和离子残基

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摘要

De novo sequencing is still essential in the identification of peptides and proteins from unexplored organisms whose sequence information is not available. One of the remaining problems in de novo sequencing is discrimination between Leu and Ile residues. The discrimination is possible based on differences in side chain fragmentation between Leu and Ile under high-energy collision-induced dissociation (HE-CID) conditions. However, this is observed only when basic residues, such as Arg and Lys, are present near the N- or C-terminal end. It has been shown that the charge derivatization at the N-terminal end by a quarternary ammonium or phosphonium moiety facilitates the side chain fragmentation by HE-CID. However, the effective backbone fragmentation by low-energy CID (LE-CID) is often hampered in those derivatives with a fixed charge. Previously, we demonstrated that the N-terminal charge derivatization with the structures having high proton affinity induced the preferential formation of b-ions under LE-CID conditions, allowing straightforward interpretation of product ion spectra. In the present study, we further investigated whether the same derivatization approach is also effective for discrimination between Leu and Ile under HE-CID conditions. Consequently, the side chain fragmentation of Leu and Ile residues was most effectively enhanced by the N-terminal derivatization with 4-(guanidinomethyl)benzoic acid among the tested structures. This derivatization approach, which is compatible with both HE- and LE-CID analysis, offers a straightforward and unambiguous de novo peptide sequencing method.
机译:从头测序对于鉴定未获得序列信息的未探索生物的肽和蛋白质仍然至关重要。从头测序的剩余问题之一是Leu和Ile残基之间的区别。基于在高能碰撞诱导解离(HE-CID)条件下Leu和Ile之间的侧链断裂差异,可以进行区分。但是,只有当碱性残基(例如Arg和Lys)存在于N端或C端附近时,才能观察到这一点。已经显示,季铵或or部分在N-末端的电荷衍生化促进了HE-CID的侧链断裂。但是,在那些带有固定电荷的衍生物中,低能CID(LE-CID)导致的有效骨架断裂通常受到阻碍。先前,我们证明了具有高质子亲和力的结构的N端电荷衍生化可在LE-CID条件下诱导b离子的优先形成,从而可以直接解释产物离子光谱。在本研究中,我们进一步研究了相同的衍生化方法是否还可以有效区分HE-CID条件下的Leu和Ile。因此,在被测结构中,Leu和Ile残基的侧链断裂最有效地由4-(胍基甲基)苯甲酸的N端衍生作用增强。这种衍生化方法与HE和LE-CID分析均兼容,提供了一种直接且明确的从头肽测序方法。

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