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使用优化的碰撞能量以及高分辨率、高精度的碎片离子选择来通过前体离子扫描改善糖肽检测。

Using optimized collision energies and high resolution, high accuracy fragment ion selection to improve glycopeptide detection by precursor ion scanning.

作者信息

Jebanathirajah Judith, Steen Hanno, Roepstorff Peter

机构信息

Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense, Denmark.

出版信息

J Am Soc Mass Spectrom. 2003 Jul;14(7):777-84. doi: 10.1016/S1044-0305(03)00263-0.

DOI:10.1016/S1044-0305(03)00263-0
PMID:12837600
Abstract

Glycosylation is the most widespread protein modification and is known to modulate signal transduction and several biologically important interactions. In order to understand and evaluate the biological role of glycosylation it is important to identify the glycosylated protein and localize the site glycosylation under particular biological conditions. To identify glycosylated peptides from simple mixtures, i.e., in-gel digests from single SDS PAGE bands we performed high resolution, high accuracy precursor ion scanning using a quadrupole TOF instrument equipped with the Q(2) pulsing function. The high resolving power of the quadrupole TOF instrument results in the selective detection of glycan specific fragment ions minimizing the interference of peptide derived fragment ions with the same nominal mass. Precursor ion scanning has been previously described for these glycan derived ions. However the use of this method has been limited by the low specificity of the method. The analysis using precursor ion scanning can be applied to any peptide mixture from a protein digest without having previous knowledge of the glycosylation of the protein. In addition to the low femtomole (nanomolar) detection limits, this method has the advantage that no prior derivatization or enzymatic treatment of the peptide mixtures is required.

摘要

糖基化是最广泛存在的蛋白质修饰方式,已知其可调节信号转导及多种生物学上重要的相互作用。为了理解和评估糖基化的生物学作用,在特定生物学条件下鉴定糖基化蛋白并定位糖基化位点很重要。为了从简单混合物(即来自单条SDS-PAGE条带的凝胶内消化物)中鉴定糖基化肽段,我们使用配备Q(2)脉冲功能的四极杆飞行时间仪器进行了高分辨率、高精度的前体离子扫描。四极杆飞行时间仪器的高分辨能力使得能够选择性检测聚糖特异性碎片离子,从而将具有相同标称质量的肽段衍生碎片离子的干扰降至最低。此前已有针对这些聚糖衍生离子的前体离子扫描的描述。然而,该方法的使用受到其低特异性的限制。使用前体离子扫描进行分析可应用于蛋白质消化产生的任何肽段混合物,而无需事先了解蛋白质的糖基化情况。除了低至飞摩尔(纳摩尔)的检测限外,该方法的优点还在于无需对肽段混合物进行事先衍生化或酶处理。

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