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Structural Characterization of Daunomycin-Peptide Conjugates by Various Tandem Mass Spectrometric Techniques

机译:各种串联质谱技术的Daunomycin-肽缀合物的结构表征

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摘要

The use of peptide-drug conjugates has generated wide interest as targeted antitumor therapeutics. The anthracycline antibiotic, daunomycin, is a widely used anticancer agent and it is often conjugated to different tumor homing peptides. However, comprehensive analytical characterization of these conjugates via tandem mass spectrometry (MS/MS) is challenging due to the lability of the O-glycosidic bond and the appearance of MS/MS fragment ions with little structural information. Therefore, we aimed to investigate the optimal fragmentation conditions that suppress the prevalent dissociation of the anthracycline drug and provide good sequence coverage. In this study, we comprehensively compared the performance of common fragmentation techniques, such as higher energy collisional dissociation (HCD), electron transfer dissociation (ETD), electron-transfer higher energy collisional dissociation (EThcD) and matrix-assisted laser desorption/ionization–tandem time-of-flight (MALDI-TOF/TOF) activation methods for the structural identification of synthetic daunomycin-peptide conjugates by high-resolution tandem mass spectrometry. Our results showed that peptide backbone fragmentation was inhibited by applying electron-based dissociation methods to conjugates, most possibly due to the “electron predator” effect of the daunomycin. We found that efficient HCD fragmentation was largely influenced by several factors, such as amino acid sequences, charge states and HCD energy. High energy HCD and MALDI-TOF/TOF combined with collision induced dissociation (CID) mode are the methods of choice to unambiguously assign the sequence, localize different conjugation sites and differentiate conjugate isomers.
机译:使用肽 - 药物缀合物对靶向抗肿瘤治疗剂产生了广泛的兴趣。蒽环素抗生素Daunomycin是一种广泛使用的抗癌剂,通常与不同的肿瘤宿主肽缀合。然而,由于O-糖苷键的易韧性和具有很小结构信息的MS / MS片段离子的外观,通过串联质谱(MS / MS)对这些缀合物的综合分析表征是挑战性的。因此,我们旨在研究抑制蒽环类药物的普遍解离的最佳碎片状况,并提供良好的序列覆盖。在这项研究中,我们综合地比较了常见碎片技术的性能,例如更高的能量碰撞解离(HCD),电子转移解离(ETD),电子传递较高的能量碰撞解离(ethCD)和基质辅助激光解离/电离 - 串联飞行时间(MALDI-TOF / TOF)通过高分辨率串联质谱法为合成的Daunomycin-肽缀合物结构鉴定的活化方法。我们的结果表明,通过将电子基解离方法施加到缀合物中,最可能是由于Daunomycin的“电子捕食者”效应来抑制肽骨干碎片。我们发现有效的HCD碎片在很大程度上受到若干因素的影响,例如氨基酸序列,电荷状态和HCD能量。高能量HCD和MALDI-TOF / TOF与碰撞诱导的解离(CID)模式相结合,是明确分配序列,本地化不同缀合位点和分化缀合物异构体的选择方法。

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