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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Proteins without unique 3D structures: Biotechnological applications of intrinsically unstable/disordered proteins
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Proteins without unique 3D structures: Biotechnological applications of intrinsically unstable/disordered proteins

机译:没有独特3D结构的蛋白质:本质上不稳定/无序的蛋白质的生物技术应用

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摘要

Intrinsically disordered proteins (IDPs) and intrinsically disordered protein regions (IDPRs) are functional proteins or regions that do not have unique 3D structures under functional conditions. Therefore, from the viewpoint of their lack of stable 3D structure, IDPs/IDPRs are inherently unstable. As much as structure and function of normal ordered globular proteins are determined by their amino acid sequences, the lack of unique 3D structure in IDPs/IDPRs and their disorder-based functionality are also encoded in the amino acid sequences. Because of their specific sequence features and distinctive conformational behavior, these intrinsically unstable proteins or regions have several applications in biotechnology. This review introduces some of the most characteristic features of IDPs/IDPRs (such as peculiarities of amino acid sequences of these proteins and regions, their major structural features, and peculiar responses to changes in their environment) and describes how these features can be used in the biotechnology, for example for the proteome-wide analysis of the abundance of extended IDPs, for recombinant protein isolation and purification, as polypeptide nanoparticles for drug delivery, as solubilization tools, and as thermally sensitive carriers of active peptides and proteins.
机译:固有紊乱蛋白(IDP)和固有紊乱蛋白区域(IDPR)是功能蛋白或在功能条件下不具有独特3D结构的区域。因此,从缺乏稳定的3D结构的角度来看,IDP / IDPR本质上是不稳定的。正常有序球状蛋白的结构和功能取决于它们的氨基酸序列,在IDP / IDPR中缺乏独特的3D结构以及它们基于疾病的功能也被编码在氨基酸序列中。由于其固有的序列特征和独特的构象行为,这些内在不稳定的蛋白质或区域在生物技术中具有多种应用。这篇综述介绍了IDP / IDPR的一些最典型特征(例如这些蛋白质和区域的氨基酸序列的特殊性,它们的主要结构特征以及对它们环境变化的独特响应),并描述了这些特征如何用于生物技术,例如用于蛋白质组学分析扩展IDP的丰度,重组蛋白的分离和纯化,作为药物递送的多肽纳米颗粒,作为增溶工具以及作为活性肽和蛋白质的热敏载体。

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