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快速有效的离子淌度-质谱分离含 d-氨基酸的肽。

Fast and Effective Ion Mobility-Mass Spectrometry Separation of d-Amino-Acid-Containing Peptides.

机构信息

Department of Chemistry and Biochemistry, Florida International University , Miami, Florida 33199, United States.

Department of Chemistry, Wichita State University , Wichita, Kansas 67260, United States.

出版信息

Anal Chem. 2017 Nov 7;89(21):11787-11794. doi: 10.1021/acs.analchem.7b03401. Epub 2017 Oct 19.

Abstract

Despite often minute concentrations in vivo, d-amino acid containing peptides (DAACPs) are crucial to many life processes. Standard proteomics protocols fail to detect them as d/l substitutions do not affect the peptide parent and fragment masses. The differences in fragment yields are often limited, obstructing the investigations of important but low abundance epimers in isomeric mixtures. Separation of d/l-peptides using ion mobility spectrometry (IMS) was impeded by small collision cross section differences (commonly ∼1%). Here, broad baseline separation of DAACPs with up to ∼30 residues employing trapped IMS with resolving power up to ∼340, followed by time-of-flight mass spectrometry is demonstrated. The d/l-pairs coeluting in one charge state were resolved in another, and epimers merged as protonated species were resolved upon metalation, effectively turning the charge state and cationization mode into extra separation dimensions. Linear quantification down to 0.25% proved the utility of high resolution IMS-MS for real samples with large interisomeric dynamic range. Very close relative mobilities found for DAACP pairs using traveling-wave IMS (TWIMS) with different ion sources and faster IMS separations showed the transferability of results across IMS platforms. Fragmentation of epimers can enhance their identification and further improve detection and quantification limits, and we demonstrate the advantages of online mobility separated collision-induced dissociation (CID) followed by high resolution mass spectrometry (TIMS-CID-MS) for epimer analysis.

摘要

尽管体内的浓度通常非常低,但含有 D-氨基酸的肽(DAACPs)对于许多生命过程至关重要。标准的蛋白质组学方案无法检测到它们,因为 D/L 取代不会影响肽母体和片段的质量。片段产率的差异通常很有限,这阻碍了对异构体混合物中重要但丰度低的差向异构体的研究。使用离子淌度谱(IMS)分离 D/L-肽受到小的碰撞截面差异(通常约为 1%)的阻碍。在这里,使用分辨率高达约 340 的捕获 IMS 对多达约 30 个残基的 DAACPs 进行了宽基线分离,然后进行飞行时间质谱分析。在一个电荷状态下共洗脱的 D/L 对在另一个电荷状态下得到了分离,而当金属化时,以质子化形式合并的差向异构体得到了分离,有效地将电荷状态和阳离子化模式转化为额外的分离维度。线性定量下限低至 0.25%,证明了高分辨率 IMS-MS 对于具有大异构体动态范围的真实样品的实用性。使用 traveling-wave IMS(TWIMS)和不同的离子源以及更快的 IMS 分离对 DAACP 对进行的非常接近的相对淌度研究表明,结果在 IMS 平台之间具有可转移性。差向异构体的碎裂可以增强它们的鉴定,并进一步提高检测和定量限,我们展示了在线淌度分离碰撞诱导解离(CID)后进行高分辨率质谱(TIMS-CID-MS)分析差向异构体的优势。

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