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化学交联和高通量 MALDI 质谱法获得的纳米体•膜蛋白复合物的结合特异性。

Binding Specificities of Nanobody•Membrane Protein Complexes Obtained from Chemical Cross-Linking and High-Mass MALDI Mass Spectrometry.

机构信息

Department of Chemistry and Applied Biosciences , ETH Zürich , Vladimir-Prelog-Weg 3 , 8093 Zurich , Switzerland.

Institute of Molecular Biology and Biophysics , ETH Zürich , Otto-Stern-Weg 5 , 8093 Zurich , Switzerland.

出版信息

Anal Chem. 2018 Apr 17;90(8):5306-5313. doi: 10.1021/acs.analchem.8b00236. Epub 2018 Apr 4.

Abstract

The application of nanobodies as binding partners for structure stabilization in protein X-ray crystallography is taking an increasingly important role in structural biology. However, the addition of nanobodies to the crystallization matrices might complicate the optimization of the crystallization process, which is why analytical techniques to screen and characterize suitable nanobodies are useful. Here, we show how chemical cross-linking combined with high-mass matrix-assisted laser/desorption ionization mass spectrometry can be employed as a fast screening technique to determine binding specificities of intact nanobody•membrane protein complexes. Titration series were performed to rank the binding affinity of the interacting nanobodies. To validate the mass spectrometry data, microscale thermophoresis was used, which showed binding affinities of the stronger binding nanobodies, in the low μM range. In addition, mass spectrometry provides access to the stoichiometry of the complexes formed, which enables the definition of conditions under which homogeneous complex states are present in solution. Conformational changes of the membrane protein were investigated and competitive binding experiments were used to delimit the interaction sites of the nanobodies, which is in agreement with crystal structures obtained. The results show the diversity of specifically binding nanobodies in terms of binding affinity, stoichiometry, and binding site, which illustrates the need for an analytical screening approach.

摘要

纳米抗体作为结构稳定的结合伴侣在 X 射线晶体学中的应用在结构生物学中扮演着越来越重要的角色。然而,纳米抗体的加入可能会使结晶过程的优化变得复杂,因此筛选和鉴定合适纳米抗体的分析技术是非常有用的。在这里,我们展示了如何将化学交联与高质量基质辅助激光解吸电离质谱联用,作为一种快速筛选技术,以确定完整纳米抗体-膜蛋白复合物的结合特异性。通过进行滴定系列实验来对相互作用的纳米抗体的结合亲和力进行排序。为了验证质谱数据,我们使用了微尺度热泳法,该方法显示出了具有较强结合亲和力的纳米抗体的结合亲和力在低微摩尔范围内。此外,质谱法还可以获得所形成复合物的化学计量信息,这使得我们能够确定在溶液中存在均相复合物状态的条件。我们还研究了膜蛋白的构象变化,并进行了竞争性结合实验以限定纳米抗体的结合位点,这与获得的晶体结构是一致的。研究结果表明了具有特定结合亲和力、化学计量和结合位点的纳米抗体的多样性,这说明了需要采用分析筛选方法。

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