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使用 Qh/FT-ICR 混合质谱仪对 RNase A 和 B 进行自上而下串联质谱分析。

Top-down tandem mass spectrometry on RNase A and B using a Qh/FT-ICR hybrid mass spectrometer.

机构信息

Center for Biomedical Mass Spectrometry, Boston University School of Medicine, Boston, MA, USA.

出版信息

Proteomics. 2014 May;14(10):1174-84. doi: 10.1002/pmic.201300433. Epub 2014 Apr 24.

Abstract

Protein characterization using top-down approaches emerged with advances in high-resolution mass spectrometers and increased diversity of available activation modes: collision-induced dissociation (CID), infrared multiphoton dissociation (IRMPD) electron capture dissociation (ECD), and electron transfer dissociation (ETD). Nevertheless, top-down approaches are still rarely used for glycoproteins. Hence, this work summarized the capacity of top-down approaches to improve sequence coverage and glycosylation site assignment on the glycoprotein Ribonuclease B (RNase B). The glycan effect on the protein fragmentation pattern was also investigated by comparing the fragmentation patterns of RNase B and its nonglycosylated analog RNase A. The experiments were performed on a Bruker 12-T Qh/FT-ICR SolariX mass spectrometer using vibrational (CID/IRMPD) and radical activation (ECD/ETD) with/without pre- or post-activation (IRMPD or CID, respectively). The several activation modes yielded complementary sequence information. The radical activation modes yielded the most extensive sequence coverage that was slightly improved after a CID predissociation activation event. The combination of the data made it possible to obtain 90% final sequence coverage for RNase A and 86% for RNase B. Vibrational and radical activation modes showed high retention of the complete glycan moiety (>98% for ETD and ECD) facilitating unambiguous assignment of the high-mannose glycosylation site. Moreover, the presence of the high-mannose glycan enhanced fragmentation around the glycosylation site.

摘要

采用自上而下的方法对蛋白质进行特性分析是随着高分辨率质谱仪的进步和更多可用激活模式的多样性而出现的

碰撞诱导解离(CID)、红外多光子解离(IRMPD)、电子俘获解离(ECD)和电子转移解离(ETD)。然而,自上而下的方法在糖蛋白中仍然很少使用。因此,这项工作总结了自上而下的方法在提高核糖核酸酶 B(RNase B)糖蛋白的序列覆盖率和糖基化位点分配方面的能力。通过比较 RNase B 和其非糖基化类似物 RNase A 的碎片模式,还研究了聚糖对蛋白质碎片模式的影响。实验在 Bruker 12-T Qh/FT-ICR SolariX 质谱仪上进行,使用振动(CID/IRMPD)和自由基激活(ECD/ETD)以及带有/不带有预激活或后激活(分别为 IRMPD 或 CID)。几种激活模式产生了互补的序列信息。自由基激活模式产生了最广泛的序列覆盖,在 CID 预解离激活事件后略有提高。结合这些数据,RNase A 最终的序列覆盖率达到 90%,RNase B 达到 86%。振动和自由基激活模式保留了完整聚糖部分的高保留率(ETD 和 ECD 大于 98%),有助于高甘露糖糖基化位点的明确分配。此外,高甘露糖聚糖的存在增强了糖基化位点周围的片段化。

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