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Efficient new ribozyme mimics: direct mapping of molecular design principles from small molecules to macromolecular, biomimetic catalysts

机译:高效的新型核酶模拟物: 从小分子直接映射分子设计原理 到大分子仿生催化剂

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摘要

Dramatic improvements in ribozyme mimics have been achieved by employing the principles of small molecule catalysis to the design of macromolecular, biomimetic reagents. Ribozyme mimics derived from the ligand 2,9-dimethylphenanthroline (neocuproine) show at least 30-fold improvements in efficiency at sequence-specific RNA cleavage when compared with analogous o-phenanthroline- and terpyridine-derived reagents. The suppression of hydroxide-bridged dimers and the greater activation of coordinated water by Cu(II) neocuproine (compared with the o-phananthroline and terpyridine complexes) better allow Cu(II) to reach its catalytic potential as a biomimetic RNA cleavage agent. This work demonstrates the direct mapping of molecular design principles from small-molecule cleavage to macromolecular cleavage events, generating enhanced biomimetic, sequence-specific RNA cleavage agents.
机译:通过将小分子催化原理用于大分子仿生试剂的设计,已经实现了核酶模拟物的显着改善。与类似的邻菲咯啉和三联吡啶衍生的试剂相比,衍生自配体2,9-二甲基菲咯啉(neocuproine)的核酶模拟物在序列特异性RNA裂解的效率上至少提高了30倍。铜(II)新cuproine(与邻-菲咯啉和三联吡啶配合物相比)抑制氢氧化物桥联的二聚体和更大程度地活化配位水,使铜(II)能够更好地发挥其催化潜力,成为仿生RNA裂解剂。这项工作证明了分子设计原理从小分子裂解到大分子裂解事件的直接映射,产生了增强的仿生,序列特异性RNA裂解剂。

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