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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Divalent Metal-Ion Complexes with Dipeptide Ligands Having Phe and His Side-Chain Anchors: Effects of Sequence, Metal Ion, and Anchor
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Divalent Metal-Ion Complexes with Dipeptide Ligands Having Phe and His Side-Chain Anchors: Effects of Sequence, Metal Ion, and Anchor

机译:具有Phe及其侧链锚的二肽配体的二价金属离子配合物:序列,金属离子和锚的影响

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摘要

Conformational preferences have been surveyed for divalent metal cation complexes with the dipeptide ligands AlaPhe, PheAla, GlyHis, and HisGly. Density functional theory results for a full set of complexes are presented, and previous experimental infrared spectra, supplemented by a number of newly recorded spectra obtained with infrared multiple photon dissociation spectroscopy, provide experimental verification of the preferred conformations in most cases. The overall structural features of these complexes are shown, and attention is given to comparisons involving peptide sequence, nature of the metal ion, and nature of the side-chain anchor. A regular progression is observed as a function of binding strength, whereby the weakly binding metal ions (Ba2+ to Ca2+) transition from carboxylate zwitterion (ZW) binding to charge-solvated (CS) binding, while the stronger binding metal ions (Ca2+ to Mg2+ to Ni2+) transition from CS binding to metal-ion-backbone binding (Iminol) by direct metal-nitrogen bonds to the deprotonated amide nitrogens. Two new sequence-dependent reversals are found between ZW and CS binding modes, such that Ba2+ and Ca2+ prefer ZW binding in the GlyHis case but prefer CS binding in the HisGly case. The overall binding strength for a given metal ion is not strongly dependent on the sequence, but the histidine peptides are significantly more strongly bound (by 50-100 kJ mol(-1)) than the phenylalanine peptides.
机译:已经调查了具有二肽配体AlaPhe,PheAla,GlyHis和HisGly的二价金属阳离子配合物的构象偏好。给出了整套配合物的密度泛函理论结果,并且先前的实验红外光谱,再加上用红外多光子解离光谱法获得的许多新记录的光谱,可在大多数情况下提供对优选构象的实验验证。显示了这些复合物的整体结构特征,并注意涉及肽序列,金属离子性质和侧链锚定物性质的比较。观察到有规律的进展是结合强度的函数,其中弱结合的金属离子(Ba2 +到Ca2 +)从羧酸两性离子(ZW)结合转变为电荷溶剂化(CS)结合,而较强的结合金属离子(Ca2 +到Mg2 + (Ni2 +)转变为CS结合到金属离子-主链结合(Iminol),方法是将金属-氮直接键合到去质子化的酰胺氮上。在ZW和CS结合模式之间发现了两个新的序列依赖性逆转,使得Ba2 +和Ca2 +在GlyHis情况下更喜欢ZW结合,而在HisGly情况下更喜欢CS结合。给定金属离子的整体结合强度并不强烈依赖于序列,但组氨酸肽的结合力比苯丙氨酸肽的结合力强得多(50-100 kJ mol(-1))。

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