Expanding peptide-cucurbit[7]uril interactions through selective N-terminal reductive alkylation

Rolande Meudom , Nan Zheng , Shugao Zhu , Michael T. Jacobsen , Liping Cao , Danny Hung-Chieh Chou
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引用次数: 4

Abstract

Cucurbit[7]uril (CB[7]) is a supramolecular binding host for peptides and proteins with N-terminal Phe. However, the low occurrence of such peptides and proteins limits broader applications of this unique host-guest interaction. Here, we report a strategy to expand the scope of CB[7]-peptide interaction by site-specifically introducing N-terminal substitutions (e.g. benzyl groups) using reductive alkylation. N-terminal benzylated peptides have similar affinity to CB[7] as native peptides with N-terminal Phe and even stronger interactions can be achieved using better ligands. We further expanded this host-guest interaction to be stimuli responsive. By introducing benzyl carboxylate substituents, the CB[7]-peptide interaction shows pH-dependent binding. Furthermore, benzyl boronate substituents led to saccharide-dependent CB[7]-peptide interactions. We demonstrated that using this strategy to introduce stronger CB[7] binders to the N-terminus of human calcitonin (hCT) results in increased aggregation stability in the presence of CB[7]. This strategy to expand CB[7]-peptide interaction scope opens opportunities for future applications in peptides and proteins.

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通过选择性N-末端还原烷基化扩大肽-葫芦[7]脲的相互作用
Cucurbit b[7] (CB[7])是一种具有n端苯丙氨酸的肽和蛋白质的超分子结合宿主。然而,这种肽和蛋白质的低发生率限制了这种独特的主客体相互作用的更广泛应用。在这里,我们报告了一种策略,通过还原烷基化,专门引入n端取代(如苯基)来扩大CB b[7]-肽相互作用的范围。n端苯基化肽与CB[7]的亲和力与天然肽与n端苯丙氨酸的亲和力相似,并且使用更好的配体可以实现更强的相互作用。我们进一步将这种主客互动扩展为刺激响应。通过引入苄基羧酸取代基,CB -[7]-肽相互作用呈现ph依赖性结合。此外,硼酸苄取代基导致糖依赖的CB[7]-肽相互作用。我们证明,使用这种策略将更强的CB[7]结合物引入到人降钙素(hCT)的n端,在CB[7]存在的情况下,结果增加了聚集稳定性。这一策略扩大了cb[7]-肽相互作用的范围,为未来在肽和蛋白质中的应用开辟了机会。
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来源期刊
Current research in chemical biology
Current research in chemical biology Biochemistry, Genetics and Molecular Biology (General)
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