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过渡金属离子配位对多聚丙氨酸的碰撞诱导解离的影响。

Effects of transition metal ion coordination on the collision-induced dissociation of polyalanines.

机构信息

Department of Chemistry, The University of Alabama, Tuscaloosa, AL, USA.

出版信息

J Mass Spectrom. 2011 Nov;46(11):1099-107. doi: 10.1002/jms.1992.

DOI:10.1002/jms.1992
PMID:22124980
Abstract

Transition metal-polyalanine complexes were analyzed in a high-capacity quadrupole ion trap after electrospray ionization. Polyalanines have no polar amino acid side chains to coordinate metal ions, thus allowing the effects metal ion interaction with the peptide backbone to be explored. Positive mode mass spectra produced from peptides mixed with salts of the first row transition metals Cr(III), Fe(II), Fe(III), Co(II), Ni(II), Cu(I), and Cu(II) yield singly and doubly charged metallated ions. These precursor ions undergo collision-induced dissociation (CID) to give almost exclusively metallated N-terminal product ions whose types and relative abundances depend on the identity of the transition metal. For example, Cr(III)-cationized peptides yield CID spectra that are complex and have several neutral losses, whereas Fe(III)-cationized peptides dissociate to give intense non-metallated products. The addition of Cu(II) shows the most promise for sequencing. Spectra obtained from the CID of singly and doubly charged Cu-heptaalanine ions, M + Cu - H and M + Cu , are complimentary and together provide cleavage at every residue and no neutral losses. (This contrasts with M + H of heptaalanine, where CID does not provide backbone ions to sequence the first three residues.) Transition metal cationization produces abundant metallated a-ions by CID, unlike protonated peptides that produce primarily b- and y-ions. The prominence of metallated a-ions is interesting because they do not always form from b-ions. Tandem mass spectrometry on metallated (Met = metal) a- and b-ions indicate that b(n)  + Met - H lose CO to form a(n)  + Met - H, mimicking protonated structures. In contrast, a(n)  + Met - H eliminate an amino acid residue to form a(n-1)  + Met - H, which may be useful in sequencing.

摘要

在高容量四极离子阱中,用电喷雾电离分析过渡金属-多聚丙氨酸络合物。多聚丙氨酸没有极性氨基酸侧链与金属离子配位,因此可以探索金属离子与肽骨架相互作用的影响。用第一过渡金属 Cr(III)、Fe(II)、Fe(III)、Co(II)、Ni(II)、Cu(I)和 Cu(II)的盐混合的肽产生正模式质谱,生成单电荷和双电荷的金属化离子。这些前体离子经历碰撞诱导解离 (CID),几乎只生成金属化 N 端产物离子,其类型和相对丰度取决于过渡金属的种类。例如,Cr(III) 加阳离子化的肽产生复杂的 CID 谱,具有多种中性损失,而 Fe(III) 加阳离子化的肽则解离产生强烈的非金属化产物。添加 Cu(II) 显示出测序的最大希望。通过对单电荷和双电荷 Cu-七聚丙氨酸离子 M + Cu - H 和 M + Cu 的 CID 获得的光谱是互补的,共同提供了每个残基的裂解,没有中性损失。(这与七聚丙氨酸的 M + H 形成对比,CID 不能提供用于对前三个残基进行测序的骨架离子。)与质子化肽主要产生 b-和 y-离子不同,过渡金属加阳离子化通过 CID 产生丰富的金属化 a-离子。金属化 a-离子的突出地位很有趣,因为它们并不总是从 b-离子形成。对金属化 (Met = 金属) a-和 b-离子的串联质谱分析表明,b(n)  + Met - H失去 CO 形成 a(n)  + Met - H,模拟质子化结构。相比之下,a(n)  + Met - H消除一个氨基酸残基形成 a(n-1)  + Met - H,这可能在测序中有用。

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