首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Chiral peptide nucleic acids having thymine and adenine in their side chain as specific ligands for Ni-II and Cu-II
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Chiral peptide nucleic acids having thymine and adenine in their side chain as specific ligands for Ni-II and Cu-II

机译:在其侧链中具有胸腺嘧啶和腺嘌呤作为Ni-II和Cu-II的特定配体的手性肽核酸

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Potentiometric and spectroscopic data, including NMR, CD and EPR results, as well as theoretical calculations showed that the insertion of a nucleic base into a peptide chain results in formation of very effective ligands (chiral peptide nucleic acids, C-PNAs) for Cu-II and Ni-II. The most effective ligand was that containing thymine base. The thymine moiety interacts with metal ion in the apical position via the O6 oxygen and forms a set of effective hydrogen bonds with the N-terminal amino group. In the case of adenine C-PNA, two nucleic bases may form stacking interactions, which also increases the complex stability. These interactions of nucleic bases mean that metal ion binding to peptide backbone nitrogens of PNAs leads to formation of complexes which are several orders of magnitude stronger than those obtained with oligoglycine. Metal ion binding to C-PNAs, on the other hand, induces specific conformations of the side chain groups, which would affect critically the self-recognition interactions between the C-PNA strands. [References: 23]
机译:包括NMR,CD和EPR结果在内的电位和光谱数据,以及理论计算表明,将核酸碱基插入肽链会导致形成非常有效的Cu-配体(手性肽核酸,C-PNA) II和Ni-II。最有效的配体是含有胸腺嘧啶碱的配体。胸腺嘧啶部分通过O6氧在顶端位置与金属离子相互作用,并与N端氨基形成一组有效的氢键。在腺嘌呤C-PNA的情况下,两个核酸碱基可形成堆叠相互作用,这也增加了复合物的稳定性。核酸碱基的这些相互作用意味着金属离子与PNA的肽骨架氮结合,导致形成的复合物比用寡甘氨酸获得的复合物强几个数量级。另一方面,与C-PNA结合的金属离子会诱导侧链基团的特定构象,这将严重影响C-PNA链之间的自我识别相互作用。 [参考:23]

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