HaloTag:改善可溶性表达及其在蛋白质功能分析中的应用。

Current chemical genomics Pub Date : 2012-01-01 Epub Date: 2012-09-20 DOI:10.2174/1875397301206010008
Scott N Peterson, Keehwan Kwon
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引用次数: 30

摘要

技术和方法的进步对快速发展的蛋白质组学领域至关重要。融合标签系统的发展对重组蛋白的纯化和分析至关重要。HaloTag是一种34 KDa的单体蛋白,来源于细菌卤代烷烃脱卤酶。目前使用的大多数融合标签利用与特定配体的可逆结合相互作用。HaloTag系统的独特之处在于它与氯烷配体形成共价键。这种连接允许将HaloTag附着到各种功能报告基因上,这些报告基因可用于标记和固定重组蛋白。HaloTag表达可溶性蛋白的成功率非常高,可与麦芽糖结合蛋白(MBP)标签相媲美。此外,HaloTag的切割不会导致蛋白质不溶性,而MBP标签通常会观察到这一点。在本报告中,我们描述了HaloTag系统在我们正在进行的在定制蛋白芯片上研究鼠疫杆菌3型分泌系统蛋白-蛋白相互作用的应用。我们还描述了利用亲和纯化/质谱(AP/MS)来评估Halo标签系统表征DNA结合活性和蛋白质特异性的效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The HaloTag: Improving Soluble Expression and Applications in Protein Functional Analysis.

Technological and methodological advances have been critical for the rapidly evolving field of proteomics. The development of fusion tag systems is essential for purification and analysis of recombinant proteins. The HaloTag is a 34 KDa monomeric protein derived from a bacterial haloalkane dehalogenase. The majority of fusion tags in use today utilize a reversible binding interaction with a specific ligand. The HaloTag system is unique in that it forms a covalent linkage to its chloroalkane ligand. This linkage permits attachment of the HaloTag to a variety of functional reporters, which can be used to label and immobilize recombinant proteins. The success rate for HaloTag expression of soluble proteins is very high and comparable to maltose binding protein (MBP) tag. Furthermore, cleavage of the HaloTag does not result in protein insolubility that often is observed with the MBP tag. In the present report, we describe applications of the HaloTag system in our ongoing investigation of protein-protein interactions of the Y. pestis Type 3 secretion system on a custom protein microarray. We also describe the utilization of affinity purification/mass spectroscopy (AP/MS) to evaluate the utility of the Halo Tag system to characterize DNA binding activity and protein specificity.

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