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一种用于快速且低成本蛋白质纯化的可裂解二氧化硅结合亲和标签。

A cleavable silica-binding affinity tag for rapid and inexpensive protein purification.

作者信息

Coyle Brandon L, Baneyx François

机构信息

Department of Chemical Engineering, University of Washington, Box 351750, Seattle, Washington, 98195-1750.

出版信息

Biotechnol Bioeng. 2014 Oct;111(10):2019-26. doi: 10.1002/bit.25257. Epub 2014 Jun 4.

DOI:10.1002/bit.25257
PMID:24777569
Abstract

We describe a new affinity purification tag called Car9 that confers proteins to which it is fused micromolar affinity for unmodified silica. When appended to the C-terminus of GFPmut2 through a flexible linker, Car9 promotes efficient adsorption to silica gel and the fusion protein can be released from the particles by incubation with L-lysine. Using a silica gel column and the lysine elution approach in fast protein liquid chromatography (FPLC) mode, Car9-tagged versions of GFPmut2, mCherry and maltose binding protein (MBP) can be recovered from clarified lysates with a purity of 80-90%. Capitalizing on silica's ability to handle large pressure drops, we further show that it is possible to go from cell lysates to purified protein in less than 15 min using a fully disposable device. Finally, we demonstrate that the linker-Car9 region is susceptible to proteolysis by E. coli OmpT and take advantage of this observation to excise the C-terminal extension of GFPmut2-Car9 by incubating purified fusion protein with cells that overproduce the outer membrane protease OmpT. The set of strategies described herein, should reduce the cost of affinity purification by at least 10-fold, cut down purification times to minutes, and allow for the production of proteins with native (or nearly native) termini from their C-terminally-tagged versions.

摘要

我们描述了一种名为Car9的新型亲和纯化标签,它能赋予与之融合的蛋白质对未修饰硅胶的微摩尔亲和力。当通过柔性接头连接到GFPmut2的C端时,Car9能促进蛋白质高效吸附到硅胶上,并且融合蛋白可以通过与L-赖氨酸孵育从颗粒中释放出来。在快速蛋白质液相色谱(FPLC)模式下,使用硅胶柱和赖氨酸洗脱方法,可以从澄清的裂解物中回收纯度为80-90%的带有Car9标签的GFPmut2、mCherry和麦芽糖结合蛋白(MBP)。利用硅胶承受大压力降的能力,我们进一步证明,使用完全一次性的装置,在不到15分钟的时间内就可以从细胞裂解物中获得纯化的蛋白质。最后,我们证明接头-Car9区域易受大肠杆菌OmpT蛋白酶的水解作用,并利用这一观察结果,通过将纯化的融合蛋白与过量表达外膜蛋白酶OmpT的细胞孵育,切除GFPmut2-Car9的C端延伸部分。本文所述的这套策略应能将亲和纯化成本降低至少10倍,将纯化时间缩短至几分钟,并能从其C端标记的版本中生产出具有天然(或接近天然)末端的蛋白质。

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