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首页> 外文期刊>Analytical chemistry >A Mechanistic Investigation of the Enhanced Cleavage at Histidine in the Gas-Phase Dissociation of Protonated Peptides
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A Mechanistic Investigation of the Enhanced Cleavage at Histidine in the Gas-Phase Dissociation of Protonated Peptides

机译:质子化肽气相解离中组氨酸增强裂解的机制研究。

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摘要

Enhanced gas-phase cleavage of peptides adjacent to histidine was investigated. The peptides examined were angiotensins III (RVYIHPF) and IV (VYIHPF) as well as synthetic peptide analogues with altered key residues ((R)VYI-X-Z-F; X=F or H and Z=A, P, or Sar) or a fixed charge M3P+CH_(2)C(O)-VYIHPF. While all singly protonated peptide ions containing both histidine and arginine fragment nonselectively, the doubly protonated peptide ions with arginine and histidine, and the singly protonated peptides containing histidine but not arginine, cleave in a selective manner. In particular, dominant complementary b~(+)/y~(+) product ions resulting from cleavage between the HP amide bond are observed. For the fixed-charge derivative, selective cleavage occurs only if a proton is added to produce a doubly charged precursor. The results are consistent with involvement of a protonated histidine in the selective cleavage. The ratio of b~(+)/y~(+) is determined by the identity of the residue C-terminal to histidine and by the ability of protonated histidine to transfer a proton to the C-terminal leaving fragment. This was probed further by systematically changing the residue C-terminal to histidine and by alkylating histidine. The results indicate that while b~(+)/y~(+) complementary ion pairs dominate in doubly protonated RVYIHPF, b_(5)~(2+) and b_(6)~(2+) product ions dominate the spectra of doubly protonated RVYIHAF. Also, dominant b_(5)~(2+) product ions are observed when the histidine side chain is alkylated (H*) in doubly protonated RVYIH*PF. Based on all of the results, a selective fragmentation mechanism for enhanced cleavage at histidine involving an atypical b ion structure is proposed.
机译:研究了与组氨酸相邻的肽的增强的气相裂解。检查的肽为血管紧张素III(RVYIHPF)和IV(VYIHPF)以及具有改变的关键残基的合成肽类似物((R)VYI-XZF; X = F或H且Z = A,P或Sar)或固定的充电M3P + CH_(2)C(O)-VYIHPF。尽管所有含有组氨酸和精氨酸的单质子化肽离子均非选择性裂解,但含有精氨酸和组氨酸的双质子化肽离子以及含有组氨酸但不含精氨酸的单质子化肽以选择性方式裂解。特别地,观察到由于HP酰胺键之间的裂解而产生的主要互补b〜(+)/ y〜(+)产物离子。对于固定电荷的衍生物,仅当添加质子以产生双电荷的前体时才发生选择性裂解。结果与质子化组氨酸参与选择性切割一致。 b〜(+)/ y〜(+)之比取决于残基C端与组氨酸的同一性,以及质子化的组氨酸将质子转移至C端离开片段的能力。通过系统地将残基的C-末端改变为组氨酸并通过将组氨酸烷基化来进一步探测。结果表明,在双质子化RVYIHPF中,b〜(+)/ y〜(+)互补离子对占主导地位,而b_(5)〜(2+)和b_(6)〜(2+)产物离子占主导地位。双质子化的RVYIHAF。同样,在双质子化的RVYIH * PF中,当组氨酸侧链被烷基化(H *)时,观察到主要的b_(5)〜(2+)产物离子。基于所有结果,提出了一种选择性的断裂机制,用于增强在组氨酸上的裂解,该裂解涉及非典型的b离子结构。

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