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A light-responsive multienzyme complex combining cascade enzymes within a peptide-based matrix

机译:在基于肽的基质中结合级联酶的光响应性多酶复合物

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In this study, a light-responsive multienzyme complex (GOx&hemin@PepM) was developed by incorporating glucose oxidase (GOx) and hemin within a peptide-based matrix. An azobenzene group (Azo) was linked to the N-terminucs of glycine-phenylalanine-glycine tripeptide (GFG) to facilitate the formation of the supramolecular peptide-based matrix. Due to the proximity effect of GOx and hemin in the matrix as well as the biomimetic microenvironment of the peptide-based material, the transfer of intermediates can be enhanced and the catalytic activity of this multienzyme complex was greatly improved over free enzymes for catalyzing a cascade reaction. In addition, based on the light-responsive conformational switching of azobenzene between E and Z forms, the structure of the peptide-based matrix can be modulated, by which the catalytic activity of the multienzyme complex can be further controlled using UV and visible light. This study provides a new approach for constructing a stimuli-responsive multienzyme complex based on an adjustable material platform.
机译:在这项研究中,通过将葡萄糖氧化酶(GOx)和血红素掺入基于肽的基质中,开发了一种光响应性多酶复合物(GOx&hemin @ PepM)。偶氮苯基(Azo)与甘氨酸-苯丙氨酸-甘氨酸三肽(GFG)的N末端相连,以促进基于超分子肽的基质的形成。由于GOx和血红素在基质中的邻近效应以及基于肽的材料的仿生微环境,可以增强中间体的转移,并且该多酶复合物的催化活性比游离酶催化级联反应的能力大大提高。反应。另外,基于偶氮苯在E和Z形式之间的光响应构象转换,可以调节基于肽的基质的结构,通过该结构,可以使用UV和可见光进一步控制多酶复合物的催化活性。这项研究提供了一种基于可调节的材料平台构建刺激反应性多酶复合物的新方法。

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