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聚糖微阵列作为用于鉴定免疫蛋白聚糖识别的化学工具。

Glycan Microarrays as Chemical Tools for Identifying Glycan Recognition by Immune Proteins.

作者信息

Gao Chao, Wei Mohui, McKitrick Tanya R, McQuillan Alyssa M, Heimburg-Molinaro Jamie, Cummings Richard D

机构信息

Department of Surgery, National Center for Functional Glycomics, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, United States.

出版信息

Front Chem. 2019 Dec 13;7:833. doi: 10.3389/fchem.2019.00833. eCollection 2019.

Abstract

Glycans and glycan binding proteins (GBPs or lectins) are essential components in almost every aspect of immunology. Investigations of the interactions between glycans and GBPs have greatly advanced our understanding of the molecular basis of these fundamental immunological processes. In order to better study the glycan-GBP interactions, microscope glass slide-based glycan microarrays were conceived and proved to be an incredibly useful and successful tool. A variety of methods have been developed to better present the glycans so that they mimic natural presentations. Breakthroughs in chemical biology approaches have also made available glycans with sophisticated structures that were considered practically impossible just a few decade ago. Glycan microarrays provide a wealth of valuable information in immunological studies. They allow for discovery of detailed glycan binding preferences or novel binding epitopes of known endogenous immune receptors, which can potentially lead to the discovery of natural ligands that carry the glycans. Glycan microarrays also serve as a platform to discover new GBPs that are vital to the process of infection and invasion by microorganisms. This review summarizes the construction strategies and the immunological applications of glycan microarrays, particularly focused on those with the most comprehensive sets of glycan structures. We also review new methods and technologies that have evolved. We believe that glycan microarrays will continue to benefit the growing research community with various interests in the field of immunology.

摘要

聚糖和聚糖结合蛋白(GBP,即凝集素)几乎在免疫学的各个方面都是必不可少的组成部分。对聚糖与GBP之间相互作用的研究极大地推动了我们对这些基本免疫过程分子基础的理解。为了更好地研究聚糖与GBP的相互作用,基于显微镜载玻片的聚糖微阵列应运而生,并被证明是一种极其有用且成功的工具。人们开发了多种方法来更好地展示聚糖,使其模拟自然呈现方式。化学生物学方法的突破还使得具有复杂结构的聚糖得以实现,而就在几十年前,这些结构还被认为几乎是不可能的。聚糖微阵列在免疫学研究中提供了丰富的有价值信息。它们有助于发现已知内源性免疫受体详细的聚糖结合偏好或新的结合表位,这可能会带来携带这些聚糖的天然配体的发现。聚糖微阵列还作为一个平台,用于发现对微生物感染和侵袭过程至关重要的新GBP。本综述总结了聚糖微阵列的构建策略及其免疫学应用,特别关注那些具有最全面聚糖结构集的微阵列。我们还回顾了已发展的新方法和新技术。我们相信,聚糖微阵列将继续造福于在免疫学领域有着各种兴趣的不断壮大的研究群体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba52/6923789/22fa94b9a726/fchem-07-00833-g0001.jpg

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