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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structural Elucidation of Biological and Toxicological Complexes: Investigation of Monomeric and Dimeric Complexes of Histidine with Multiply Charged Transition Metal (Zn and Cd) Cations using IR Action Spectroscopy
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Structural Elucidation of Biological and Toxicological Complexes: Investigation of Monomeric and Dimeric Complexes of Histidine with Multiply Charged Transition Metal (Zn and Cd) Cations using IR Action Spectroscopy

机译:生物和毒理学复合物的结构阐明:组氨酸的单体和二聚体配合物,使用红外作用光谱法研究带正电荷的过渡金属(Zn和Cd)阳离子

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摘要

The gas-phase structures of singly and doubly charged complexes involving transition metal cations, Zn and Cd, bound to the amino acid histidine (His) as well as deprotonated His (His-H) are investigated using infrared multiple photon dissociation (IRMPD) spectroscopy utilizing light generated by a free electron laser. IRPMD spectra are measured for CdCl~+(His), [Zn(His-H)]~+, [Cd(His-H)]~+, Zn~(2+)(His)2, and Cd~(2+)(His)2 in the 550-1800 cm~(-1) range. These studies are complemented by quantum mechanical calculations of the predicted linear absorption spectra at the B3LYP/6-311+G(d,p) and B3LYP/Def2TZVP levels. The monomeric spectra are similar to one another and indicate that histidine coordinates to the metal in a charge-solvated (CS) tridentate form in the CdCl~+(His) complex and has a similar tridentate configuration with a deprotonated carboxyuc acid terminus in the [M(His-H)]~+ complexes. The preference tor these particular complexes is also found in the relative energetics calculated at the B3LYP, B3P86, and MP2(full) levels. The spectra of the dimer complexes have obvious CS characteristics, suggesting that at least one of the His ligands is charge solvated; however, there are also signatures for a salt-bridge (SB) formation in the second His ligand. The definitive assignment of a SB Hgand is complicated by the presence of the CS ligand and conflicting relative energetics from the different levels of theory.
机译:使用红外多光子离解(IRMPD)光谱研究了结合到氨基酸组氨酸(His)和去质子化His(His-H)上的过渡金属阳离子Zn和Cd的单电荷和双电荷配合物的气相结构利用自由电子激光器产生的光。测量CdCl〜+(His),[Zn(His-H)]〜+,[Cd(His-H)]〜+,Zn〜(2 +)(His)2和Cd〜(2)的IRPMD光谱+)(His)2在550-1800 cm〜(-1)范围内。这些研究得到了B3LYP / 6-311 + G(d,p)和B3LYP / Def2TZVP水平的线性吸收光谱的量子力学计算的补充。单体光谱彼此相似,表明组氨酸以CdCl〜+(His)配合物的电荷溶剂化(CS)三齿形式与金属配位,并具有相似的三齿构型,并在[[ M(His-H)]〜+配合物。在B3LYP,B3P86和MP2(全)水平计算的相对能学中也发现了对这些特定复合物的偏爱。二聚体配合物的光谱具有明显的CS特征,表明至少一个His配体是电荷溶剂化的。但是,在第二个His配体中也有盐桥(SB)形成的特征。 SB配体的确定分配因CS配体的存在和来自不同理论水平的相对能量的冲突而变得复杂。

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