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糖蛋白微异质性和宏异质性的定量分析:使用合成肽和糖肽评估质谱信号强度。

Quantitative mapping of glycoprotein micro-heterogeneity and macro-heterogeneity: an evaluation of mass spectrometry signal strengths using synthetic peptides and glycopeptides.

机构信息

Department of Biomolecular Systems, Max Planck Institute of Colloids and Interfaces, 14424 Potsdam, Germany.

出版信息

J Mass Spectrom. 2013 Jun;48(6):627-39. doi: 10.1002/jms.3210.

Abstract

Mass spectrometry (MS) is used to quantify the relative distribution of glycans attached to particular protein glycosylation sites (micro-heterogeneity) and evaluate the molar site occupancy (macro-heterogeneity) in glycoproteomics. However, the accuracy of MS for such quantitative measurements remains to be clarified. As a key step towards this goal, a panel of related tryptic peptides with and without complex, biantennary, disialylated N-glycans was chemically synthesised by solid-phase peptide synthesis. Peptides mimicking those resulting from enzymatic deglycosylation using PNGase F/A and endo D/F/H were synthetically produced, carrying aspartic acid and N-acetylglucosamine-linked asparagine residues, respectively, at the glycosylation site. The MS ionisation/detection strengths of these pure, well-defined and quantified compounds were investigated using various MS ionisation techniques and mass analysers (ESI-IT, ESI-Q-TOF, MALDI-TOF, ESI/MALDI-FT-ICR-MS). Depending on the ion source/mass analyser, glycopeptides carrying complex-type N-glycans exhibited clearly lower signal strengths (10-50% of an unglycosylated peptide) when equimolar amounts were analysed. Less ionisation/detection bias was observed when the glycopeptides were analysed by nano-ESI and medium-pressure MALDI. The position of the glycosylation site within the tryptic peptides also influenced the signal response, in particular if detected as singly or doubly charged signals. This is the first study to systematically and quantitatively address and determine MS glycopeptide ionisation/detection strengths to evaluate glycoprotein micro-heterogeneity and macro-heterogeneity by label-free approaches. These data form a much needed knowledge base for accurate quantitative glycoproteomics.

摘要

质谱(MS)用于定量分析特定蛋白质糖基化位点上连接的聚糖的相对分布(微观异质性),并评估糖蛋白组学中糖基化位点的摩尔占有率(宏观异质性)。然而,MS 用于此类定量测量的准确性仍有待澄清。作为实现这一目标的关键步骤,通过固相肽合成化学合成了一组具有和不具有复杂、双触角、二唾液酸化 N-聚糖的相关胰蛋白酶肽。模拟使用 PNGase F/A 和内切酶 D/F/H 进行酶解糖基化产生的肽,分别在糖基化位点处带有天冬氨酸和 N-乙酰葡萄糖胺连接的天冬酰胺残基。使用各种 MS 离子化技术和质量分析器(ESI-IT、ESI-Q-TOF、MALDI-TOF、ESI/MALDI-FT-ICR-MS)研究了这些纯、定义明确和定量的化合物的 MS 离子化/检测强度。根据离子源/质量分析器的不同,当分析等摩尔量时,带有复杂型 N-聚糖的糖肽表现出明显较低的信号强度(未糖基化肽的 10-50%)。当通过纳喷雾电离和中压 MALDI 分析糖肽时,观察到的离子化/检测偏差较小。胰蛋白酶肽中糖基化位点的位置也会影响信号响应,特别是如果以单电荷或双电荷信号检测时。这是第一项系统地、定量地解决和确定 MS 糖肽离子化/检测强度的研究,用于通过无标记方法评估糖蛋白的微观异质性和宏观异质性。这些数据为准确的定量糖蛋白组学形成了一个急需的知识库。

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