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基于质谱的糖基化中心细胞糖组学是一种更有成效的方法,可以见树又见林。

A mass spectrometry-based glycotope-centric cellular glycomics is the more fruitful way forward to see the forest for the trees.

机构信息

Institute of Biological Chemistry, Academia Sinica, 128, Academia Road Sec 2, Nankang, Taipei 115, Taiwan.

出版信息

Biochem Soc Trans. 2021 Feb 26;49(1):55-69. doi: 10.1042/BST20190861.

Abstract

The nature of protein glycosylation renders cellular glycomics a very challenging task in having to deal with all the disparate glycans carried on membrane glycoproteins. Rapid mapping by mass spectrometry analysis provides only a coarse sketch of the glycomic complexity based primarily on glycosyl compositions, whereby the missing high-resolution structural details require a combination of multi-mode separations and multi-stages of induced fragmentation to gain sufficiently discriminative precision, often at the expenses of throughput and sensitivity. Given the available technology and foreseeable advances in the near future, homing in on resolving the terminal fucosylated, sialylated and/or sulfated structural units, or glycotopes, maybe a more pragmatic and ultimately more rewarding approach to gain insights into myriad biological processes mediated by these terminal coding units carried on important glycoproteins, to be decoded by a host of endogenous glycan-binding proteins and antibodies. A broad overview of recent technical advances and limitations in cellular glycomics is first provided as a backdrop to the propounded glycotope-centric approach based on advanced nanoLC-MS2/MS3 analysis of permethylated glycans. To prioritize analytical focus on the more tangible glycotopes is akin to first identifying the eye-catching and characteristic-defining flowers and fruits of the glyco-forest, to see the forest for the trees. It has the best prospects of attaining the much-needed balance in sensitivity, structural precision and analytical throughput to match advances in other omics.

摘要

蛋白质糖基化的本质使得细胞糖组学在处理所有存在于膜糖蛋白上的不同聚糖时面临着非常具有挑战性的任务。基于糖基组成的质谱分析快速作图只能粗略地描绘糖组学的复杂性,而缺失的高分辨率结构细节需要多种模式分离和多个诱导片段化阶段的组合来获得足够的鉴别精度,这通常需要牺牲通量和灵敏度。鉴于现有的技术和可预见的未来进展,将重点放在解析末端岩藻糖基化、唾液酸化和/或硫酸化的结构单元或糖基上,可能是一种更务实、最终更有成效的方法,可以深入了解这些末端编码单元介导的众多生物过程,这些末端编码单元由许多内源性糖结合蛋白和抗体进行解码。本文首先提供了细胞糖组学的最新技术进展和局限性的广泛概述,作为基于甲基化聚糖的先进纳升 LC-MS2/MS3 分析的糖基中心方法的背景。将分析重点优先放在更有形的糖基上类似于首先识别出引人注目的、特征定义明确的花果,以见树木,见森林。它最有希望在灵敏度、结构精度和分析通量方面实现急需的平衡,以匹配其他组学的进展。

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