首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Highly efficient purification of protein complexes from mammalian cells using a novel streptavidin-binding peptide and hexahistidine tandem tag system: Application to Brutons tyrosine kinase
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Highly efficient purification of protein complexes from mammalian cells using a novel streptavidin-binding peptide and hexahistidine tandem tag system: Application to Brutons tyrosine kinase

机译:使用新型链霉亲和素结合肽和六组氨酸串联标签系统从哺乳动物细胞中高效纯化蛋白复合物:在布鲁顿酪氨酸激酶中的应用

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摘要

Tandem affinity purification (TAP) is a generic approach for the purification of protein complexes. The key advantage of TAP is the engineering of dual affinity tags that, when attached to the protein of interest, allow purification of the target protein along with its binding partners through two consecutive purification steps. The tandem tag used in the original method consists of two IgG-binding units of protein A from Staphylococcus aureus (ProtA) and the calmodulin-binding peptide (CBP), and it allows for recovery of 20–30% of the bait protein in yeast. When applied to higher eukaryotes, however, this classical TAP tag suffers from low yields. To improve protein recovery in systems other than yeast, we describe herein the development of a three-tag system comprised of CBP, streptavidin-binding peptide (SBP) and hexa-histidine. We illustrate the application of this approach for the purification of human Bruton's tyrosine kinase (Btk), which results in highly efficient binding and elution of bait protein in both purification steps (>50% recovery). Combined with mass spectrometry for protein identification, this TAP strategy facilitated the first nonbiased analysis of Btk interacting proteins. The high efficiency of the SBP-His6 purification allows for efficient recovery of protein complexes formed with a target protein of interest from a small amount of starting material, enhancing the ability to detect low abundance and transient interactions in eukaryotic cell systems.
机译:串联亲和纯化(TAP)是纯化蛋白复合物的通用方法。 TAP的主要优势是双亲和标签的工程改造,当该双亲和标签连接到目标蛋白质时,可以通过两个连续的纯化步骤纯化目标蛋白质及其结合伴侣。原始方法中使用的串联标签由金黄色葡萄球菌(ProtA)和钙调蛋白结合肽(CBP)的两个蛋白A的IgG结合单元组成,可以回收酵母中20-30%的诱饵蛋白。但是,当将其应用于高级真核生物时,这种经典的TAP标签的产量较低。为了改善酵母以外的系统中的蛋白质回收,我们在本文中描述了由CBP,链霉亲和素结合肽(SBP)和六组氨酸组成的三标签系统的开发。我们举例说明了该方法在纯化人布鲁顿酪氨酸激酶(Btk)中的应用,这在两个纯化步骤中均能高效结合和洗脱诱饵蛋白(回收率> 50%)。结合质谱法进行蛋白质鉴定,这种TAP策略促进了Btk相互作用蛋白质的首次无偏分析。 SBP-His6纯化的高效率可从少量起始材料中有效回收与目标目标蛋白形成的蛋白复合物,从而增强了在真核细胞系统中检测低丰度和瞬时相互作用的能力。

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