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首页> 外文期刊>European journal of mass spectrometry >Evaluating the role of the ligand in the fragmentation reactions of platinum(II) complexes of aliphatic dipeptides. Electrospray ionization tandem mass spectrometry of [Pt(L_3)M]~(2+) and [Pt(L_3)M - H]~+ ions [L_3 = (H_3N)_3, diethylenetriamine and
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Evaluating the role of the ligand in the fragmentation reactions of platinum(II) complexes of aliphatic dipeptides. Electrospray ionization tandem mass spectrometry of [Pt(L_3)M]~(2+) and [Pt(L_3)M - H]~+ ions [L_3 = (H_3N)_3, diethylenetriamine and

机译:评价配体在脂族二肽铂(II)络合物的片段化反应中的作用。 [Pt(L_3)M]〜(2+)和[Pt(L_3)M-H]〜+离子[L_3 =(H_3N)_3,二亚乙基三胺和

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Incubation of simple aliphatic dipeptides (M) with [Pt(L_3)Cl]~+ complexes (where L_3 = terpyridine, diethylenetriamine or triamine) results in the formation of platinated dipeptides as detected by electrospray ionization mass spectrometry. Although the [Pt(L_3)M - H]~+ and [Pt(L_3)M]~(2+) ions represent less than 1% of the total-ion current, they can readily be mass selected and subjected to collision-induced dissociation in an ion trap mass spectrometer. The nature of the coordinating ligands and the charge state have profound effects on the types of fragmentation reactions observed. Thus, the tridentate ligands terpyridine (terpy) and diethylenetriamine (dien) induce dissociation of the peptide bond and the C-terminal OH bond in the [Pt(L_3)M]~(2+) ions, whereas the complex containing the three unidentate ammonia ligands fragments via neutral and charged ammonia loss. [Pt(L_3)M]~(2+) ions, whereas the complex containing the three unidentate ammonia ligands fragments via neutral and charged ammonia loss. [Pt(terpy)M - H]~+ ions fragment via peptide bond cleavage and also through a C-terminal rearrangement reaction for gly-ala and glycyl-N-methylglycine, but not for ala-gly. In contrast, [Pt(dien)M - H]~+ ions fragment via loss of the neutral dipeptide while [Pt(NH_3)_3M - H]~+ ions fragment via loss of NH_3.
机译:通过[Pt(L_3)Cl]〜+配合物(其中L_3 =吡啶,二亚乙基三胺或三胺)与简单的脂肪族二肽(M)一起孵育,可形成电镀二肽,如电喷雾电离质谱法所检测。尽管[Pt(L_3)M-H]〜+和[Pt(L_3)M]〜(2+)离子占总离子流的比例不到1%,但它们很容易被质量选择并受到碰撞-离子阱质谱仪中引起的离解。配位体的性质和电荷状态对观察到的断裂反应的类型具有深远的影响。因此,三齿配体三联吡啶(terpy)和二亚乙基三胺(dien)诱导了[Pt(L_3)M]〜(2+)离子中肽键和C端OH键的解离,而包含三个不相同的复合物氨配体通过中性和带电荷的氨损失而破碎。 [Pt(L_3)M]〜(2+)离子,而包含三个不明氨配体的配合物则通过中性和带电氨损失而破碎。 [Pt(terpy)M-H]〜+离子通过肽键的裂解,也通过C末端重排反应生成gly-ala和甘氨酰-N-甲基甘氨酸,但没有生成ala-gly。相反,[Pt(dien)M-H]〜+离子通过中性二肽的损失而断裂,而[Pt(NH_3)_3M-H]〜+离子通过NH_3的损失而断裂。

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