首页> 外文期刊>Frontiers in Chemistry >Synergistic Catalysis by “Polymeric Microzymes and Inorganic Nanozymes”: The 1+1>2 Effect for Intramolecular Cyclization of Peptides
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Synergistic Catalysis by “Polymeric Microzymes and Inorganic Nanozymes”: The 1+1>2 Effect for Intramolecular Cyclization of Peptides

机译:高分子微酶和无机纳米酶的协同催化:肽分子内环化的1 + 1> 2效应。

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In this work, we developed an efficient “molecularly imprinted polymer microzymes and inorganic magnetic nanozymes” synergistic catalysis strategy for the formation of disulfide bonds in peptides. The polymeric microzymes showed excellent selectivity toward the template peptide as well as the main reactant (linear peptide), and the Fe3O4 magnetic nanoparticle (MNP) nanozymes inhibited the intermolecular reaction during the formation of disulfide bonds in peptides. As a result, the integration of the two different artificial enzymes in one process facilitates the intramolecular cyclization in high product yields (59.3%) with excellent selectivity. Mechanism study indicates the synergistic effect was occurred by using a “reversed solid phase synthesis” strategy with an enhanced shift of reaction balance to product generation. We believe the synergistic catalysis by “polymeric microzymes and inorganic nanozymes” presented in the present work may open new opportunities in creation of multifunctional enzyme mimics for sensing, imaging, and drug delivery.
机译:在这项工作中,我们开发了一种有效的“分子印迹聚合物微酶和无机磁性纳米酶”协同催化策略,用于在肽中形成二硫键。聚合酶对模板肽和主要反应物(线性肽)显示出极好的选择性,Fe3O4磁性纳米颗粒(MNP)纳米酶抑制了肽中二硫键形成过程中的分子间反应。结果,两种不同的人工酶在一个过程中的整合促进了分子内环化,产物产率高(59.3%),选择性极好。机理研究表明,协同作用是通过使用“逆固相合成”策略发生的,其中反应平衡向产物生成的转移有所增强。我们认为,本工作中提出的“聚合微酶和无机纳米酶”的协同催化作用可能会为创建用于感测,成像和药物传递的多功能酶模拟物提供新的机会。

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