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在离子阱质谱仪中,环取代基对苯丙氨酸类似物与Ag(+)配合物形成H₂O加合物倾向的影响。

Influence of a ring substituent on the tendency to form H(2)O adducts to Ag(+) complexes with phenylalanine analogues in an ion trap mass spectrometer.

作者信息

Perera B A, Gallardo A L, Barr J M, Tekarli S M, Anbalagan V, Talaty E R, Van Stipdonk M J

机构信息

Department of Chemistry, Wichita State University, Wichita, Kansas 67260-0051, USA.

出版信息

J Mass Spectrom. 2002 Apr;37(4):401-13. doi: 10.1002/jms.296.

Abstract

In a previous report we showed that certain binary Ag(+)-amino acid complexes formed adduct ions by the attachment of a single water and methanol molecule when stored in an ion trap mass spectrometer: complexes with aliphatic amino acids and with 4-fluorophenylalanine formed the adduct ions whereas complexes with phenylalanine and tryptophan did not. In this study we compared the tendency of the Ag(+) complexes derived from phenylalanine, 4-fluorophenylalanine, 4-hydroxyphenylalanine (tyrosine), 4-bromophenylalanine, 4-nitrophenylalanine and aminocyclohexanepropionic acid to form water adducts when stored, without further activation, in the ion trap for times ranging from 1 to 500 ms. Because the donation of pi electron density to the Ag(+) ion is a likely determining factor in complex reactivity, our aim in the present study was to determine qualitatively the influence of para-position substituents on the aromatic ring on the formation of the water adducts. Our results show that the reactivity of the complexes is influenced significantly by the presence of the various substituents. Decreases in M + Ag ion abundance, and increases in adduct ion abundance, both measured as a function of storage time, follow the trend -NO(2) > -Br > -F > -OH > -H. The complex of Ag(+) with 4-nitrophenylalanine was nearly as reactive towards water as the Ag(+) complex with aminocyclohexanepropionic acid, the last being an amino acid devoid of pi character in the ring system. Collision induced dissociation of the M + Ag species derived from the amino acids produces, among other products, Ag(+) complexes with a para-substituted phenylacetaldehyde: complexes that also form adduct species when stored in the ion trap. The trends in adduct ion formation exhibited by the aldehyde-Ag(+) complex ions were similar to those observed for the precursor complexes of Ag(+) and the amino acids, confirming the influence of the ring substituent.

摘要

在之前的一份报告中,我们表明某些二元Ag(+) - 氨基酸络合物在离子阱质谱仪中储存时,通过附着单个水分子和甲醇分子形成加合离子:与脂肪族氨基酸以及与4 - 氟苯丙氨酸形成加合离子,而与苯丙氨酸和色氨酸形成的络合物则不形成。在本研究中,我们比较了由苯丙氨酸、4 - 氟苯丙氨酸、4 - 羟基苯丙氨酸(酪氨酸)、4 - 溴苯丙氨酸、4 - 硝基苯丙氨酸和氨基环己烷丙酸衍生的Ag(+)络合物在离子阱中储存1至500毫秒且无进一步活化时形成水加合物的倾向。由于向Ag(+)离子提供π电子密度可能是络合物反应性的一个决定性因素,我们在本研究中的目的是定性地确定芳环对位取代基对水加合物形成的影响。我们的结果表明,各种取代基的存在显著影响络合物的反应性。以储存时间为函数测量的M + Ag离子丰度的降低和加合离子丰度的增加遵循 -NO(2) > -Br > -F > -OH > -H的趋势。Ag(+)与4 - 硝基苯丙氨酸的络合物对水的反应性几乎与Ag(+)与氨基环己烷丙酸的络合物相同,后者是一种在环系统中没有π特征的氨基酸。氨基酸衍生的M + Ag物种的碰撞诱导解离除其他产物外,还产生与对位取代苯乙醛的Ag(+)络合物:这些络合物在离子阱中储存时也形成加合物物种。醛 - Ag(+)络合离子表现出的加合离子形成趋势与Ag(+)和氨基酸的前体络合物观察到的趋势相似,证实了环取代基的影响。

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