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Metal–peptide rings form highly entangled topologically inequivalent frameworks with the same ring- and crossing-numbers

机译:金属肽环形成具有相同环数和交叉数的高度纠缠的拓扑不等价框架

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摘要

With increasing ring-crossing number (c), knot theory predicts an exponential increase in the number of topologically different links of these interlocking structures, even for structures with the same ring number (n) and c. Here, we report the selective construction of two topologies of 12-crossing peptide [4]catenanes (n = 4, c = 12) from metal ions and pyridine-appended tripeptide ligands. Two of the 100 possible topologies for this structure are selectively created from related ligands in which only the tripeptide sequence is changed: one catenane has a T2-tetrahedral link and the other a three-crossed tetrahedral link. Crystallographic studies illustrate that a conformational difference in only one of the three peptide residues in the ligand causes the change in the structure of the final tetrahedral link. Our results thus reveal that peptide-based folding and assembly can be used for the facile bottom-up construction of 3D molecular objects containing polyhedral links.
机译:随着环交叉数(c)的增加,结理论预测这些互锁结构的拓扑不同链接的数量呈指数增长,即使对于具有相同环数(n)和c的结构也是如此。在这里,我们报道了从金属离子和吡啶附加的三肽配体中选择性构建12个交叉的肽[4]邻苯二酚(n = 4,c = 12)的两种拓扑结构。从相关配体中选择性地创建该结构的100种可能拓扑中的两种,其中仅改变三肽序列:一个链烷烃具有T2-四面体键,另一个具有三叉四面体键。晶体学研究表明,配体中三个肽残基中仅一个的构象差异会导致最终四面体连接结构发生变化。因此,我们的结果表明,基于肽的折叠和组装可用于包含多面体链接的3D分子对象的轻松自底向上构造。

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