首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >One-step Purification of Twin-Strep-tagged Proteins and Their Complexes on Strep-Tactin Resin Cross-linked With Bis(sulfosuccinimidyl) Suberate (BS3)
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One-step Purification of Twin-Strep-tagged Proteins and Their Complexes on Strep-Tactin Resin Cross-linked With Bis(sulfosuccinimidyl) Suberate (BS3)

机译:用双(磺基琥珀酰亚胺)辛二酸酯(BS3)交联的链球菌-肌动蛋白树脂的一步纯化双链球菌标记的蛋白及其复合物。

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摘要

Affinity purification of Strep-tagged fusion proteins on resins carrying an engineered streptavidin (Strep-Tactin) has become a widely used method for isolation of protein complexes under physiological conditions. Fusion proteins containing two copies of Strep-tag II, designated twin-Strep-tag or SIII-tag, have the advantage of higher affinity for Strep-Tactin compared to those containing only a single Strep-tag, thus allowing more efficient protein purification. However, this advantage is offset by the fact that elution of twin-Strep-tagged proteins with biotin may be incomplete, leading to low protein recovery. The recovery can be dramatically improved by using denaturing elution with sodium dodecyl sulfate (SDS), but this leads to sample contamination with Strep-Tactin released from the resin, making the assay incompatible with downstream proteomic analysis. To overcome this limitation, we have developed a method whereby resin-coupled tetramer of Strep-Tactin is first stabilized by covalent cross-linking with Bis(sulfosuccinimidyl) suberate (BS3) and the resulting cross-linked resin is then used to purify target protein complexes in a single batch purification step. Efficient elution with SDS ensures good protein recovery, while the absence of contaminating Strep-Tactin allows downstream protein analysis by mass spectrometry. As a proof of concept, we describe here a protocol for purification of SIII-tagged viral protein VPg-Pro from nuclei of virus-infected N. benthamiana plants using the Strep-Tactin polymethacrylate resin cross-linked with BS3. The same protocol can be used to purify any twin-Strep-tagged protein of interest and characterize its physiological binding partners.
机译:在带有工程链霉亲和素(Strep-Tactin)的树脂上亲和纯化带有Strep标签的融合蛋白已成为在生理条件下分离蛋白复合物的一种广泛使用的方法。与仅包含一个Strep-tag的融合蛋白相比,包含两个Strep-tag II的拷贝的融合蛋白(称为孪生Strep-tag或SIII-tag)具有对Strep-Tactin更高的亲和力的优势,从而可以更有效地纯化蛋白质。但是,这种优势被以下事实所抵消:使用生物素洗脱双链球蛋白标签的蛋白质可能不完全,导致蛋白质回收率较低。通过使用十二烷基硫酸钠(SDS)变性洗脱可以显着提高回收率,但这会导致样品从树脂中释放出的Strep-Tactin污染样品,从而使该测定与下游蛋白质组学分析不兼容。为克服此限制,我们开发了一种方法,其中首先通过与辛二酸双(磺基琥珀酰亚胺基)酯(BS3)共价交联来稳定链霉亲和素的树脂偶联四聚体,然后将所得的交联树脂用于纯化目标蛋白单批纯化步骤中制备复合物。用SDS进行高效洗脱可确保良好的蛋白质回收,而没有污染的Strep-Tactin则可通过质谱分析进行下游蛋白质分析。作为概念的证明,我们在这里描述了一种使用Strep-Tactin聚甲基丙烯酸酯树脂与BS3交联从病毒感染的本氏烟草植物核中纯化SIII标签的病毒蛋白VPg-Pro的协议。可以使用相同的方案纯化任何感兴趣的带有双Strep标签的蛋白并表征其生理结合伴侣。

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