Recent progress in artificial receptors for phosphate anions in aqueous solution

Shin Aoki, Eiichi Kimura
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引用次数: 90

Abstract

Phosphate esters exist ubiquitously in nature in the form of nucleoside phosphates (nucleotides) as components of RNA (or DNA), sugar nucleotides for glycosylation of oligosaccharides or proteins, activated form of proteins responding to extracellular signals, and chemical mediators playing central roles in intracellular signaling signals. Phosphorylation of anti-viral nucleoside analogues by intracellular kinases yields nucleoside phosphates (nucleotide) as biologically active forms as anti-viral agents. Development of artificial phosphate receptors would afford new methodologies for detection, separation, or transport of biologically important phosphates. Herein, a recent progress of artificial phosphate receptors is reviewed with special focus on macrocyclic polyamines and their metal complexes as a new prototype. In comparison to most of the previous artificial receptors (most of them are organic molecules), our system characteristically works in aqueous solution at neutral pH with extremely strong affinities with phosphate anions. Moreover, zinc(II)–macrocyclic tetraamine (cyclen) complexes were discovered to selectively bind thymine and uracil, so that nucleotides of these bases are specifically recognized by the bis(Zn2+–cyclen) complexes.

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水溶液中磷酸阴离子人工受体的研究进展
磷酸酯在自然界中以核苷磷酸(核苷酸)的形式普遍存在,作为RNA(或DNA)的组分,用于低聚糖或蛋白质糖基化的糖核苷酸,响应细胞外信号的激活形式的蛋白质,以及在细胞内信号传导中起核心作用的化学介质。细胞内激酶磷酸化抗病毒核苷类似物产生核苷磷酸(核苷酸)作为抗病毒药物的生物活性形式。人工磷酸盐受体的发展将为检测、分离或运输生物学上重要的磷酸盐提供新的方法。本文综述了近年来人工磷酸盐受体的研究进展,重点介绍了以大环多胺及其金属配合物为代表的新型磷酸盐受体。与以前的大多数人工受体(大多数是有机分子)相比,我们的系统的特点是在中性pH的水溶液中工作,与磷酸盐阴离子具有极强的亲和力。此外,锌(II) -大环四胺(cyclen)配合物被发现选择性地结合胸腺嘧啶和尿嘧啶,因此这些碱基的核苷酸被二(Zn2+ -cyclen)配合物特异性识别。
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Subject Index Author Index Core and periphery functionalized dendrimers for transition metal catalysis; a covalent and a non-covalent approach Dendritic supports in organic synthesis Peptide dendrimers: applications and synthesis
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