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活体细胞内原位聚糖分析与编辑

In Situ Glycan Analysis and Editing in Living Systems.

作者信息

Li Yiran, Wang Haiqi, Chen Yunlong, Ding Lin, Ju Huangxian

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

Chemistry and Biomedicine Innovation Center (ChemBIC), Nanjing University, Nanjing 210023, China.

出版信息

JACS Au. 2024 Jan 17;4(2):384-401. doi: 10.1021/jacsau.3c00717. eCollection 2024 Feb 26.

Abstract

Besides proteins and nucleic acids, carbohydrates are also ubiquitous building blocks of living systems. Approximately 70% of mammalian proteins are glycosylated. Glycans not only provide structural support for living systems but also act as crucial regulators of cellular functions. As a result, they are considered essential pieces of the life science puzzle. However, research on glycans has lagged far behind that on proteins and nucleic acids. The main reason is that glycans are not direct products of gene coding, and their synthesis is nontemplated. In addition, the diversity of monosaccharide species and their linkage patterns contribute to the complexity of the glycan structures, which is the molecular basis for their diverse functions. Research in glycobiology is extremely challenging, especially for the in situ elucidation of glycan structures and functions. There is an urgent need to develop highly specific glycan labeling tools and imaging methods and devise glycan editing strategies. This Perspective focuses on the challenges of in situ analysis of glycans in living systems at three spatial levels (i.e., cell, tissue, and in vivo) and highlights recent advances and directions in glycan labeling, imaging, and editing tools. We believe that examining the current development landscape and the existing bottlenecks can drive the evolution of in situ glycan analysis and intervention strategies and provide glycan-based insights for clinical diagnosis and therapeutics.

摘要

除蛋白质和核酸外,碳水化合物也是生命系统中普遍存在的组成部分。大约70%的哺乳动物蛋白质是糖基化的。聚糖不仅为生命系统提供结构支持,还作为细胞功能的关键调节因子发挥作用。因此,它们被认为是生命科学难题的重要组成部分。然而,对聚糖的研究远远落后于对蛋白质和核酸的研究。主要原因是聚糖不是基因编码的直接产物,其合成没有模板。此外,单糖种类及其连接方式的多样性导致了聚糖结构的复杂性,这是其多种功能的分子基础。糖生物学研究极具挑战性,尤其是对聚糖结构和功能的原位阐明。迫切需要开发高度特异性的聚糖标记工具和成像方法,并设计聚糖编辑策略。本观点聚焦于在细胞、组织和体内三个空间水平上对活系统中聚糖进行原位分析的挑战,并突出了聚糖标记、成像和编辑工具的最新进展和方向。我们相信,审视当前的发展态势和现存瓶颈能够推动原位聚糖分析和干预策略的发展,并为临床诊断和治疗提供基于聚糖的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5e1/10900212/8e930570594c/au3c00717_0006.jpg

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