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微尺度热泳法实现近乎天然、定点、无需纯化的蛋白质标记,用于定量蛋白质相互作用分析。

Near-native, site-specific and purification-free protein labeling for quantitative protein interaction analysis by MicroScale Thermophoresis.

机构信息

NanoTemper Technologies GmbH, Floessergasse 4, 81069, München, Germany.

Division of Biotechnology, Department of Biology, Friedrich-Alexander University Erlangen, Nuremberg Henkestr 91, 91052, Erlangen, Germany.

出版信息

Sci Rep. 2018 Mar 21;8(1):4977. doi: 10.1038/s41598-018-23154-3.

Abstract

MicroScale Thermophoresis (MST) is a frequently used method for the quantitative characterization of intermolecular interactions with several advantages over other technologies. One of these is its capability to determine equilibrium constants in solution including complex biological matrices such as cell lysates. MST requires one binding partner to be fluorescent, which is typically achieved by labeling target proteins with a suitable fluorophore. Here, we present a near-native, site-specific in situ labeling strategy for MST experiments that enables reliable measurements in cell lysates and that has distinct advantages over routine covalent labeling techniques. To this end, we exploited the high-affinity interaction of tris-NTA with oligohistidine-tags, which are popular for purification, immobilization or detection of recombinant proteins. We used various DYE-tris-NTA conjugates to successfully label His-tagged proteins that were either purified or a component of cell lysate. The RED-tris-NTA was identified as the optimal dye conjugate with a high affinity towards oligohistidine-tags, a high fluorescence signal and an optimal signal-to-noise ratio in MST binding experiments. Owing to its emission in the red region of the spectrum, it also enables reliable measurements in complex biological matrices such as cell lysates allowing a more physiologically realistic assessment and eliminating the need for protein purification.

摘要

微量热泳动分析(MST)是一种常用于定量描述分子间相互作用的方法,它比其他技术具有多项优势。其中之一是能够在溶液中测定平衡常数,包括细胞裂解物等复杂的生物基质。MST 需要一个结合伴侣具有荧光性,这通常通过用合适的荧光染料标记靶蛋白来实现。在这里,我们提出了一种用于 MST 实验的近天然、定点原位标记策略,该策略能够在细胞裂解物中进行可靠的测量,并且与常规的共价标记技术相比具有明显的优势。为此,我们利用了 tris-NTA 与寡组氨酸标签的高亲和力相互作用,寡组氨酸标签常用于重组蛋白的纯化、固定或检测。我们使用各种 DYE-tris-NTA 缀合物成功标记了纯化的或细胞裂解物成分的 His 标记蛋白。RED-tris-NTA 被确定为最佳的染料缀合物,它与寡组氨酸标签具有高亲和力、高荧光信号和 MST 结合实验中的最佳信噪比。由于其在光谱的红色区域发射,它还能够在复杂的生物基质(如细胞裂解物)中进行可靠的测量,从而能够更真实地评估生理状态,并消除对蛋白质纯化的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21dd/5862892/b757ab6f2455/41598_2018_23154_Fig1_HTML.jpg

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