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首页> 外文期刊>Angewandte Chemie >In Situ Cyclization of Native Proteins: Structure-Based Design of a Bicyclic Enzyme
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In Situ Cyclization of Native Proteins: Structure-Based Design of a Bicyclic Enzyme

机译:原位蛋白质的环化:基于结构的双环酶设计

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摘要

Increased tolerance of enzymes towards thermal and chemical stress is required for many applications and can be achieved by macrocyclization of the enzyme resulting in the stabilizing of its tertiary structure. Thus far, macrocyclization approaches utilize a very limited structural diversity, which complicates the design process. Herein, we report an approach that enables cyclization through the installation of modular crosslinks into native proteins composed entirely of proteinogenic amino acids. Our stabilization procedure involves the introduction of three surface-exposed cysteine residues, which are reacted with a triselectrophile, resulting in the insitu cyclization of the protein (INCYPRO). A bicyclic version of sortaseA was designed that exhibits increased tolerance towards thermal as well as chemical denaturation, and proved to be efficient in protein labeling under denaturing conditions. In addition, we applied INCYPRO to the KIX domain, resulting in up to 24 degrees C increased thermal stability.
机译:许多应用需要增加酶的耐受性和化学胁迫的耐受性,并且可以通过酶的致癌产生稳定其三级结构来实现。到目前为止,宏观循环方法采用非常有限的结构多样性,使设计过程复杂化。在此,我们报告了一种方法,该方法能够通过将模块化交联的循环化成完全由蛋白质氨基酸组成的天然蛋白质来循环化。我们的稳定化程序涉及引入三种表面暴露的半胱氨酸残基,其与Triseloctophile反应,导致蛋白质的内部环化(Incypro)。设计了一双环版的排序,其表现出对热量和化学变性的耐受性增加,并证明在变性条件下蛋白质标记有效。此外,我们将incypro应用于kix域,导致高达24℃的热稳定性增加。

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