一种纯化无标记靶蛋白的便捷的分裂-蛋白标签法。

Q1 Biochemistry, Genetics and Molecular Biology Current Protocols in Protein Science Pub Date : 2018-02-21 DOI:10.1002/cpps.46
Merideth A Cooper, Joseph E Taris, Changhua Shi, David W Wood
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引用次数: 9

摘要

在这项工作中,我们描述了一种基于高度修饰的分裂-内部切割元件的新型自切割标签技术。在该系统中,工程分裂的内连蛋白的n端片段在大肠杆菌中表达,并以共价固定在捕获树脂上,而较小的c端内连蛋白片段则融合到所需目标蛋白的n端。然后,标记的靶标可以在适当的表达系统中表达,而不必担心过早的蛋白切割。在纯化过程中,内链片段之间的强关联有效地将标记的目标捕获到捕获树脂上,同时产生具有切割能力的内链复合物。一旦通过洗涤柱纯化了复合物,只需将缓冲液的pH值从8.5转移到6.2,就可以诱导内部介导的裂解和无标签靶标的释放。该结果为纯化无迹无标签靶蛋白提供了一种方便有效的方法,可用于表征和功能研究。©2018 by John Wiley & Sons, Inc。
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A Convenient Split-Intein Tag Method for the Purification of Tagless Target Proteins.

In this work, we describe a novel self-cleaving tag technology based on a highly modified split-intein cleaving element. In this system, the N-terminal segment of an engineered split intein is expressed in E. coli and covalently immobilized onto a capture resin, while the smaller C-terminal intein segment is fused to the N-terminus of the desired target protein. The tagged target can then be expressed in an appropriate expression system, without concern for premature intein cleaving. During the purification, strong association between the intein segments effectively captures the tagged target onto the capture resin while simultaneously generating a cleaving-competent intein complex. Once the complex is purified by washing the column, intein-mediated cleavage and release of the tagless target is induced with a simple shift in buffer pH from 8.5 to 6.2. The result is a convenient and effective method for the purification of traceless and tagless target proteins, which can be used in characterization and functional studies. © 2018 by John Wiley & Sons, Inc.

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来源期刊
Current Protocols in Protein Science
Current Protocols in Protein Science Biochemistry, Genetics and Molecular Biology-Biochemistry
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期刊介绍: With the mapping of the human genome, more and more researchers are exploring protein structures and functions in living organisms. Current Protocols in Protein Science provides protein scientists, biochemists, molecular biologists, geneticists, and others with the first comprehensive suite of protocols for this growing field.
期刊最新文献
Issue Information De Novo Protein Design Using the Blueprint Builder in Rosetta Methods for Expression of Recombinant Proteins Using a Pichia pastoris Cell-Free System Histone Purification Combined with High-Resolution Mass Spectrometry to Examine Histone Post-Translational Modifications and Histone Variants in Caenorhabditis elegans Issue Information
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