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Electron capture dissociation and drift tube ion mobility-mass spectrometry coupled with site directed mutations provide insights into the conformational diversity of a metamorphic protein

机译:电子捕获解离和漂移管离子迁移率 - 质谱联合定点突变提供了对变态蛋白构象多样性的见解

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摘要

Ion mobility mass spectrometry can be combined with data from top-down sequencing to discern adopted conformations of proteins in the absence of solvent. This multi-technique approach has particular applicability for conformationally dynamic systems. Previously, we demonstrated the use of drift tube ion mobility-mass spectrometry (DT IM-MS) and electron capture dissociation (ECD) to study the metamorphic protein lymphotactin (Ltn). Ltn exists in equilibrium between distinct monomeric (Ltn10) and dimeric (Ltn40) folds, both of which can be preserved and probed in the gas-phase. Here, we further test this mass spectrometric framework, by examining two site directed mutants of Ltn, designed to stabilise either distinct fold in solution, in addition to a truncated form consisting of a minimum model of structure for Ltn10. The truncated mutant has similar collision cross sections to the wild type (WT), for low charge states, and is resistant to ECD fragmentation. The monomer mutant (CC3) presents in similar conformational families as observed previously for the WT Ltn monomer. As with the WT, the CC3 mutant is resistant to ECD fragmentation at low charge states. The dimer mutant W55D is found here to exist as both a monomer and dimer. As a monomer W55D exhibits similar behaviour to the WT, but as a dimer presents a much larger charge state and collision cross section range than the WT dimer, suggesting a smaller interaction interface. In addition, ECD on the W55D mutant yields greater fragmentation than for the WT, suggesting a less stable beta-sheet core. The results highlight the power of MS to provide insight into dynamic proteins, providing further information on each distinct fold of Ltn. In addition we observe differences in the fold stability following single or double point mutations. This approach, therefore, has potential to be a useful tool to screen for the structural effects of mutagenesis, even when sample is limited.
机译:离子淌度质谱可以与自上而下测序的数据相结合,以在不存在溶剂的情况下识别蛋白质的已采用构象。这种多技术方法在构象动态系统中具有特殊的适用性。以前,我们证明了使用漂移管离子淌度质谱(DT IM-MS)和电子捕获解离(ECD)来研究变态蛋白淋巴动蛋白(Ltn)。 Ltn在不同的单体折叠(Ltn10)和二聚体(Ltn40)折叠之间处于平衡状态,两者均可在气相中保存和探测。在这里,我们通过检查Ltn的两个定点突变体,进一步设计了这种质谱框架,以稳定溶液中的不同折叠,以及由Ltn10的最小结构模型组成的截短形式。对于低电荷状态,截短的突变体具有与野生型(WT)相似的碰撞截面,并且对ECD片段具有抵抗力。单体突变体(CC3)呈现与先前观察到的WT Ltn单体相似的构象家族。与WT一样,CC3突变体在低电荷状态下对ECD片段具有抗性。在此发现二聚体突变体W55D既作为单体又作为二聚体存在。作为单体,W55D表现出与WT相似的行为,但由于二聚体比WT二聚体呈现出更大的电荷状态和碰撞截面范围,表明相互作用界面更小。此外,与WT相比,W55D突变体上的ECD产生更大的片段化,表明β-sheet核心稳定性较差。结果突出了MS能够洞察动态蛋白质的能力,提供了有关Ltn每个不同折叠的进一步信息。另外,我们观察到单点或双点突变后的折叠稳定性差异。因此,即使在样品有限的情况下,这种方法也可能成为筛选诱变的结构效应的有用工具。

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