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离子淌度与原生质谱联用作为研究极小配体诱导构象变化的相关工具。

Ion mobility coupled to native mass spectrometry as a relevant tool to investigate extremely small ligand-induced conformational changes.

作者信息

Stojko Johann, Fieulaine Sonia, Petiot-Bécard Stéphanie, Van Dorsselaer Alain, Meinnel Thierry, Giglione Carmela, Cianférani Sarah

机构信息

BioOrganic Mass Spectrometry Laboratory (LSMBO), IPHC, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg, France.

出版信息

Analyst. 2015 Nov 7;140(21):7234-45. doi: 10.1039/c5an01311a. Epub 2015 Sep 24.

DOI:10.1039/c5an01311a
PMID:26401526
Abstract

We evaluate the potential of native mass spectrometry (MS) and ion mobility (IM-MS) for the screening of protein : ligand complexes when very subtle conformational changes are involved. As a proof of concept, we investigate the interactions between a peptide deformylase (PDF1B), a promising target for the development of new antibiotics, and three of its specific inhibitors that bind in different modes. First, real-time native MS reveals two types of ligands, both interacting in a 1 : 1 stoichiometry with PDF1B but with different affinities and gas phase stabilities. Conformational IM-MS screening then highlights two very close but significantly distinct ligand-induced conformations with collision cross sections that differ by less than 1%. Real-time IM-MS is used to monitor not only the dynamics of ligand binding to apoPDF1B but also the switching between holo conformations. This study provides additional evidence that the most potent ligands inhibit peptide deformylases through a slow-tight binding mechanism, in agreement with previous structural and enzymology studies. Furthermore, this approach, wherein the characteristics obtained by native MS are combined with IM-MS conformational screening, prove valuable in characterizing extremely subtle dynamic conformational changes induced when ligands bind to protein assemblies. We discuss the promise and limitations of IM-MS in the context of detection of very small conformational changes induced upon ligand binding.

摘要

我们评估了在涉及非常细微的构象变化时,采用原生质谱(MS)和离子淌度(IM-MS)筛选蛋白质:配体复合物的潜力。作为概念验证,我们研究了肽脱甲酰基酶(PDF1B,一种新型抗生素开发的有前景靶点)与其三种以不同模式结合的特异性抑制剂之间的相互作用。首先,实时原生质谱揭示了两种类型的配体,它们均以1:1化学计量比与PDF1B相互作用,但亲和力和气相稳定性不同。随后的构象IM-MS筛选突出了两种非常接近但明显不同的配体诱导构象,其碰撞截面差异小于1%。实时IM-MS不仅用于监测配体与脱辅基PDF1B结合的动力学过程,还用于监测全酶构象之间的转换。这项研究提供了更多证据,表明最有效的配体通过慢紧密结合机制抑制肽脱甲酰基酶,这与之前的结构和酶学研究一致。此外,这种将原生质谱获得的特征与IM-MS构象筛选相结合的方法,在表征配体与蛋白质组装体结合时诱导的极其细微的动态构象变化方面被证明是有价值的。我们在检测配体结合时诱导的非常小的构象变化的背景下,讨论了IM-MS的前景和局限性。

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