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12 重等压多重标记试剂,用于含羰基化合物(糖)标记增强型高通量定量糖组学

12-Plex Isobaric Multiplex Labeling Reagents for Carbonyl-Containing Compound (SUGAR) Tag-Enabled High-Throughput Quantitative Glycomics.

机构信息

Department of Chemistry, University of Wisconsin-Madison, Madison, WI, USA.

School of Pharmacy, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Methods Mol Biol. 2024;2823:155-172. doi: 10.1007/978-1-0716-3922-1_11.

Abstract

Glycans, which are ubiquitously distributed on most proteins and cell surfaces, are a class of important biomolecules playing crucial roles in various biological processes such as molecular recognition and cellular communication. Modern mass spectrometry (MS) coupled with novel chemical probe labeling strategies has greatly advanced analysis of glycans. However, the requirement of high-throughput and robust quantitative analysis still calls for the development of more advanced tools. Recently, we devised isobaric multiplex reagents for carbonyl-containing compound (SUGAR) tags for 4-plex N-glycan analysis. To further improve the throughput, we utilized the mass-defect strategy and expanded the multiplexing capacity to 12 channels without changing the chemical structure of the SUGAR tag, achieving a threefold enhancement in throughput compared with the original design and managing to perform high-throughput N-glycan analysis in a single LC - MS/MS injection. Herein, we present detailed methods for the synthesis of 12-plex SUGAR isobaric tags, the procedure to release and label the N-glycans from proteins, and the analysis by high-resolution LC-MS/MS, as well as data processing to achieve multiplexed quantitative glycomics.

摘要

聚糖广泛分布于大多数蛋白质和细胞表面,是一类重要的生物分子,在分子识别和细胞通讯等多种生物过程中发挥着关键作用。现代质谱(MS)技术与新型化学探针标记策略相结合,极大地推动了聚糖的分析。然而,高通量和稳健定量分析的需求仍然需要开发更先进的工具。最近,我们设计了用于羰基化合物(SUGAR)标签的等重多组分试剂,用于 4 重 N-聚糖分析。为了进一步提高通量,我们利用质量亏损策略,在不改变 SUGAR 标签化学结构的情况下,将多重化能力扩展到 12 个通道,与原始设计相比,通量提高了三倍,并能够在单次 LC-MS/MS 进样中进行高通量 N-聚糖分析。在此,我们详细介绍了 12 重 SUGAR 等重标签的合成方法、从蛋白质中释放和标记 N-聚糖的步骤,以及通过高分辨 LC-MS/MS 进行分析和数据处理以实现多重定量糖组学的方法。

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