短肽在极简生物催化剂设计中的应用

K. Duncan, R. Ulijn
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引用次数: 45

摘要

摘要:本文综述了短肽在酯水解生物催化剂设计中的应用进展。许多设计的肽纳米结构被证明具有(适度的)催化活性。本文讨论并举例说明了五个特征,包括初级肽序列、纳米表面/支架、结合袋、多价性和金属离子的存在。其中一些来源于天然酶,但其他一些,如设计的纳米纤维上活性位点的多价性,可能会产生天然酶中没有的新特性。值得注意的是,这些设计特征中的每一个都能在酯水解中产生相似的速率增强。总的来说,近年来在对影响结合和活性的因素的基本理解方面取得了重大进展,这为越来越合理地设计基于肽的生物催化剂带来了希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Short Peptides in Minimalistic Biocatalyst Design
Abstract We review recent developments in the use of short peptides in the design of minimalistic biocatalysts focusing on ester hydrolysis. A number of designed peptide nanostructures are shown to have (modest) catalytic activity. Five features are discussed and illustrated by literature examples, including primary peptide sequence, nanosurfaces/scaffolds, binding pockets, multivalency and the presence of metal ions. Some of these are derived from natural enzymes, but others, such as multivalency of active sites on designed nanofibers, may give rise to new features not found in natural enzymes. Remarkably, it is shown that each of these design features give rise to similar rate enhancements in ester hydrolysis. Overall, there has been significant progress in the development of fundamental understanding of the factors that influence binding and activity in recent years, holding promise for increasingly rational design of peptide based biocatalysts.
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