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首页> 外文期刊>Journal of mass spectrometry: JMS >Zinc and cadmium complexation of L-methionine: An infrared multiple photon dissociation spectroscopy and theoretical study
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Zinc and cadmium complexation of L-methionine: An infrared multiple photon dissociation spectroscopy and theoretical study

机译:L-甲硫氨酸的锌和镉络合:红外多光子解离光谱和理论研究

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摘要

Methionine (Met) cationized with Zn2+, forming Zn (Met-H)(+)(ACN) where ACN = acetonitrile, Zn (Met-H)(+), and ZnCl+(Met), as well as Cd2+, forming CdCl+(Met), were examined by infrared multiple photon dissociation (IRMPD) action spectroscopy using light generated from the FELIX free electron laser. A series of low-energy conformers for each complex was found using quantum-chemical calculations in order to identify the structures formed experimentally. For all four complexes, spectral comparison indicated that the main binding motif observed is a charge solvated, tridentate structure where the metal center binds to the backbone amino group nitrogen, backbone carbonyl oxygen (where the carboxylic acid is deprotonated in two of the Zn(2+)complexes), and side-chain sulfur. For all species, the predicted ground structures reproduce the experimental spectra well, although low-lying conformers characterized by similar binding motifs may also contribute in each system. The current work provides valuable information regarding the binding interaction between Met and biologically relevant metals. Further, the comparison between the current work and previous analyses involving alkali metal cationized Met as well as cysteine (the other sulfur containing amino acid) cationized with Zn(2+)and Cd(2+)allows for the elucidation of important metal dependent trends associated with physiologically important metal-sulfur binding.
机译:用FELIX自由电子激光产生的光,通过红外多光子离解(IRMPD)作用光谱法检测了用Zn2+阳离子化的蛋氨酸(Met),形成Zn(Met-H)(+)(ACN),其中ACN=乙腈,Zn(Met-H)(+)和ZnCl+(Met),以及形成CdCl+(Met)的Cd2+。为了确定实验形成的结构,利用量子化学计算发现了每个络合物的一系列低能构象。对于所有四个配合物,光谱比较表明,观察到的主要结合基序是电荷溶剂化的三齿结构,其中金属中心与主链氨基氮、主链羰基氧(其中两个Zn(2+)配合物中的羧酸脱质子)和侧链硫结合。对于所有物种,预测的基态结构很好地再现了实验光谱,尽管具有类似结合基序的低洼构象也可能在每个系统中起作用。目前的工作提供了有关多金属硫醚和生物相关金属之间结合相互作用的宝贵信息。此外,当前工作与之前涉及碱金属阳离子化Met以及与Zn(2+)和Cd(2+)阳离子化的半胱氨酸(另一种含硫氨基酸)的分析之间的比较允许阐明与生理上重要的金属硫结合相关的重要金属依赖性趋势。

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