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Chiroptical sensing of amino acids by stereodynamic imprinting into the Zn-II-Complex generating a dihedral chirality

机译:Zn-II复合物产生Zn-II复合物的氨基酸的阴影传感Zn-II复合体产生二赤鳞

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摘要

A stereodynamic chiroptical sensor based on three-component assembly of 3-(di-2-picolylaminoacetamido)-2-formyl-naphthalene (1), Zn-II and amino acids was developed. The imine formed between 1 and an amino acid has six coordination sites to bind tightly ZIP ion. The crystal structure of the Zn-II complex, 1-Zn-D-Phe, revealed that the naphthyl ring is tilted to one pyridine ring to generate axial chirality. The dihedral conformations observed in 1-Zn-D-Phe were herein arbitrarily designated as alpha(1) and alpha(2). DFT calculation suggests that the D-Phe binding prefer the alpha(1)-conformer: the energy of D-Phe-alpha(1) is more stable than L-Phe-alpha(1) by 5.5 kcal/mol. This preference to one diastereomer generates amplification of CD signal with Cotton effect, which can be applied to the determination of ee values of the amino acid.
机译:显着基于3-(DI-2-吡啶基丙氨酸氨基甲酰氨基乙烯(1),Zn-II和氨基酸的三组分组件的立体动力学毛细防图传感器。 在1和氨基酸之间形成的亚胺具有六个配位位点以粘合紧密拉链离子。 Zn-II复合物,1-Zn-D-PHE的晶体结构显示,萘曲环倾斜至一个吡啶环以产生轴向手性。 在1-Zn-D-PHE中观察到的二对肌锥在此任意指定为α(1)和α(2)。 DFT计算表明D-PHE结合更喜欢α(1) - 甲基(1):D-PHE-α(1)的能量比L-PHE-α(1)更稳定5.5kcal / mol。 对一个非对映异构体的这种偏好产生具有棉效应的Cd信号的扩增,这可以应用于氨基酸的EE值的测定。

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