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生物分离中的亲和力概念:不断演变的范式与不断拓展的应用范围

The affinity concept in bioseparation: evolving paradigms and expanding range of applications.

作者信息

Mondal Kalyani, Gupta Munishwar N

机构信息

Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Biomol Eng. 2006 Jun;23(2-3):59-76. doi: 10.1016/j.bioeng.2006.01.004. Epub 2006 Mar 9.

Abstract

The meaning of the word affinity in the context of protein separation has undergone evolutionary changes over the years. The exploitation of molecular recognition phenomenon is no longer limited to affinity chromatography modes. Affinity based separations today include precipitation, membrane based purification and two-phase/three-phase extractions. Apart from the affinity ligands, which have biological relationship (in vivo) with the target protein, a variety of other ligands are now used in the affinity based separations. These include dyes, chelated metal ions, peptides obtained by phage display technology, combinatorial synthesis, ribosome display methods and by systematic evolution of ligands by exponential enrichment (SELEX). Molecular modeling techniques have also facilitated the designing of biomimetic ligands. Fusion proteins obtained by recombinatorial methods have emerged as a powerful approach in bioseparation. Overexpression in E. coli often result in inactive and insoluble inclusion bodies. A number of interesting approaches are used for simultaneous refolding and purification in such cases. Proteomics also needs affinity chromatography to reduce the complexity of the system before analysis by electrophoresis and mass spectrometry are made. At industrial level, validation, biosafety and process hygiene are also important aspects. This overview looks at these evolving paradigms and various strategies which utilize affinity phenomenon for protein separations.

摘要

多年来,“亲和性”一词在蛋白质分离背景下的含义经历了演变。对分子识别现象的利用不再局限于亲和色谱模式。如今基于亲和性的分离方法包括沉淀、基于膜的纯化以及两相/三相萃取。除了与目标蛋白具有生物学关系(在体内)的亲和配体之外,现在各种其他配体也被用于基于亲和性的分离。这些配体包括染料、螯合金属离子、通过噬菌体展示技术获得的肽、组合合成、核糖体展示方法以及通过指数富集的配体系统进化技术(SELEX)获得的配体。分子建模技术也促进了仿生配体的设计。通过重组方法获得的融合蛋白已成为生物分离中的一种强大方法。在大肠杆菌中过度表达往往会产生无活性且不溶性的包涵体。在这种情况下,有许多有趣的方法用于同时进行复性和纯化。蛋白质组学在通过电泳和质谱进行分析之前,也需要亲和色谱来降低系统的复杂性。在工业层面,验证、生物安全性和工艺卫生也是重要的方面。本综述探讨了这些不断演变的模式以及利用亲和现象进行蛋白质分离的各种策略。

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