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在肽H-His-Gly-Met-OH和Ac-His-Ala-Ala-Ala-Met-NHPh中,[Pt(dien)]2+从甲硫氨酸的S原子发生分子内迁移至咪唑的Nε2原子。

[Pt(dien)]2+ migrates intramolecularly from methionine S to imidazole Nepsilon2 in the peptides H-His-Gly-Met-OH and Ac-His-Ala-Ala-Ala-Met-NHPh.

作者信息

Hahn M, Wolters D, Sheldrick W S, Hulsbergen F B, Reedijk J

机构信息

Lehrstuhl für Analytische Chemie, Ruhr-Universität Bochum, Germany.

出版信息

J Biol Inorg Chem. 1999 Aug;4(4):412-20. doi: 10.1007/s007750050327.

Abstract

The pH- and time-dependent reaction of [Pt(dien)(H2O)]2+ with the methionine- and histidine-containing peptides H-His-Gly-Met-OH and Ac-His-Ala-Ala-Ala-Met-NHPh at 313 K has been investigated by HPLC and NMR spectroscopy. For both peptides, initial relatively rapid formation of the kinetically favoured methionine S-bound complex is followed by slow intramolecular migration of the [Pt(dien)]2+ fragment to imidazole Nepsilon2 (or, in the case of H-His-Gly-Met-OH, to a much lesser extent to the competing imidazole Ndelta1) of the histidine side chain over a period of 500 h. Time-dependent studies for the pentapeptide at pH 8.0 demonstrate that this isomerization can take place by either direct S-->Nepsilon2 migration or by a two-step mechanism involving initial Nepsilon2 coordination of a second [Pt(dien)]2+ fragment and subsequent cleavage of the orginal Pt-S bond in the resulting dinuclear complex. The rate of kappaS/kappaNepsilon2 isomerization is markedly reduced on lowering the pH to 5.1.

摘要

通过高效液相色谱法(HPLC)和核磁共振光谱法(NMR)研究了[Pt(dien)(H2O)]2+与含蛋氨酸和组氨酸的肽H-His-Gly-Met-OH以及Ac-His-Ala-Ala-Ala-Met-NHPh在313 K下的pH和时间依赖性反应。对于这两种肽,最初动力学上有利的蛋氨酸S键合络合物相对快速形成,随后在500小时内,[Pt(dien)]2+片段缓慢地分子内迁移至组氨酸侧链的咪唑Nε2(或者,对于H-His-Gly-Met-OH,在较小程度上迁移至竞争性的咪唑Nδ1)。在pH 8.0下对五肽进行的时间依赖性研究表明,这种异构化可以通过直接的S→Nε2迁移或通过两步机制发生,该机制涉及第二个[Pt(dien)]2+片段的初始Nε2配位以及所得双核络合物中原始Pt-S键的后续断裂。将pH降低至5.1时,κS/κNε2异构化的速率显著降低。

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