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蛋白质组学的最佳碰撞能:离子淌度分离的影响。

Optimum collision energies for proteomics: The impact of ion mobility separation.

机构信息

MS Proteomics Research Group, Research Centre for Natural Sciences, Budapest, H-1117, Hungary.

Hevesy György PhD School of Chemistry, Faculty of Science, Institute of Chemistry, Eötvös Loránd University, Budapest, H-1117, Hungary.

出版信息

J Mass Spectrom. 2023 Sep;58(9):e4957. doi: 10.1002/jms.4957. Epub 2023 Jul 6.

Abstract

Ion mobility spectrometry (IMS) is a widespread separation technique used in various research fields. It can be coupled to liquid chromatography-mass spectrometry (LC-MS/MS) methods providing an additional separation dimension. During IMS, ions are subjected to multiple collisions with buffer gas, which may cause significant ion heating. The present project addresses this phenomenon from the bottom-up proteomics point of view. We performed LC-MS/MS measurements on a cyclic ion mobility mass spectrometer with varied collision energy (CE) settings both with and without IMS. We investigated the CE dependence of identification score, using Byonic search engine, for more than 1000 tryptic peptides from HeLa digest standard. We determined the optimal CE values-giving the highest identification score-for both setups (i.e., with and without IMS). Results show that lower CE is advantageous when IMS separation is applied, by 6.3 V on average. This value belongs to the one-cycle separation configuration, and multiple cycles may supposedly have even larger impact. The effect of IMS is also reflected in the trends of optimal CE values versus m/z functions. The parameters suggested by the manufacturer were found to be almost optimal for the setup without IMS; on the other hand, they are obviously too high with IMS. Practical consideration on setting up a mass spectrometric platform hyphenated to IMS is also presented. Furthermore, the two CID (collision induced dissociation) fragmentation cells of the instrument-located before and after the IMS cell-were also compared, and we found that CE adjustment is needed when the trap cell is used for activation instead of the transfer cell. Data have been deposited in the MassIVE repository (MSV000090944).

摘要

离子淌度谱(IMS)是一种广泛应用于各个研究领域的分离技术。它可以与液相色谱-质谱联用(LC-MS/MS)方法耦合,提供额外的分离维度。在 IMS 过程中,离子与缓冲气体多次碰撞,可能导致显著的离子加热。本项目从底部向上的蛋白质组学角度解决了这一现象。我们在具有不同碰撞能(CE)设置的循环离子淌度质谱仪上进行了 LC-MS/MS 测量,同时进行了 IMS 和不进行 IMS 的测量。我们研究了 Byonic 搜索引擎的识别得分随 CE 的依赖性,该搜索引擎用于来自 HeLa 消化标准的 1000 多个胰蛋白酶肽。我们确定了两种设置(即有和没有 IMS)的最佳 CE 值(给出最高的识别得分)。结果表明,当应用 IMS 分离时,CE 越低越有利,平均低 6.3V。该值属于单周期分离配置,多个周期可能会产生更大的影响。IMS 的影响还反映在最佳 CE 值与 m/z 函数的趋势上。制造商建议的参数对于没有 IMS 的设置几乎是最佳的;另一方面,对于具有 IMS 的设置,它们显然过高。还提出了与 IMS 联用的质谱平台设置的实际考虑因素。此外,我们还比较了仪器的两个 CID(碰撞诱导解离)碎裂细胞-位于 IMS 细胞之前和之后-并发现当陷阱细胞用于激活而不是传输细胞时,需要调整 CE。数据已存入 MassIVE 存储库(MSV000090944)。

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