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Artificial oligopeptide scaffolds for stoichiometric metal binding

机译:人工寡肽支架用于化学计量的金属结合

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Two artificial peptides with pendant pyridine or bipyridine ligands have been synthesized and incorporated into oligomeric strands that are analogous to peptide nucleic acid. Spectrophotometric titrations with Cu2+ and Fe2+ show that the oligomers bind stoichiometric quantities of transition metals based on the number of pendant ligands. The identities of the titration products are confirmed by high resolution mass spectrometry. In the case of the bipyridine tripeptides, the titration stoichiometry and mass spectra indicate that the metal ions form interstrand cross-links between two oligopeptides, creating duplex structures linked exclusively by metal ions. Calculated molecular structures of the metalated oligopeptides and duplexes indicate that the peptide backbone acts as a scaffold for the directed assembly of metal ions. Electron paramagnetic resonance spectroscopy of the Cu-containing molecules have varying degrees of electronic interaction based on their charge and supramolecular structure. Cyclic voltammetry of the Fe2+- and Cu2+-linked bpy oligopeptide duplexes shows that they possess unique electrochemical signatures based on the redox reactivity of the metal complex.
机译:已经合成了具有侧基吡啶或联吡啶配体的两种人工肽,并将其掺入到类似于肽核酸的寡聚链中。用Cu2 +和Fe2 +进行分光光度滴定表明,低聚物基于侧基配体的数量结合化学计量的过渡金属。滴定产物的身份通过高分辨率质谱法确认。对于联吡啶三肽,滴定化学计量和质谱表明,金属离子在两个寡肽之间形成链间交联,形成仅由金属离子连接的双链结构。金属化的寡肽和双链体的分子结构计算表明,该肽主链充当金属离子定向组装的支架。含铜分子的电子顺磁共振光谱基于其电荷和超分子结构具有不同程度的电子相互作用。 Fe2 +和Cu2 +连接的bpy寡肽双链体的循环伏安法表明,它们具有基于金属络合物的氧化还原反应性的独特电化学特征。

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