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用于探索聚糖识别的新型点击偶联化学

Novel Click Coupling Chemistry to Explore Glycan Recognition.

作者信息

Jia Tianwei, Mehta Akul Y, Tilton Catherine A, Tulin Ea Kristine Clarisse, Pepi Lauren E, Muerner Lukas, von Gunten Stephan, Heimburg-Molinaro Jamie, Stowell Sean R, Cummings Richard D

机构信息

Department of Surgery, Beth Israel Deaconess Medical Center, Harvard Medical School, National Center for Functional Glycomics, CLS 11087-3 Blackfan Circle, Boston, Massachusetts 02115, United States.

Institute of Pharmacology, University of Bern, Inselspital, INO-F, Bern 3010, Switzerland.

出版信息

ACS Cent Sci. 2025 Apr 23;11(5):753-769. doi: 10.1021/acscentsci.4c02124. eCollection 2025 May 28.

Abstract

Specific recognition of glycans by proteins is important in many biological processes and immune responses. Here we present a general approach for derivatizing free glycans with a novel linker MTZ (3-(methoxyamino)-propylamine added to a bioorthogonal-functional tetrazine tag) that exploits click chemistry to generate multiple platforms of glycan coupling. This derivatization preserves glycan integrity, is reversible and quantifiable, and incorporates a bioorthogonal tetrazine tag for click coupling. A library of ABO-(H) blood group MTZ-glycans was efficiently conjugated to avidin Luminex beads through a Biotin-PEG11-TCO (-cyclooctene) spacer, generating a multiplex array that was reproducibly interrogated in a high-throughput Luminex approach with multiple lectins and antibodies. We also rapidly profiled antiglycan IgG, IgM, and IgA antibodies in multiple, serially diluted human serum samples, revealing unique repertoires of antiglycan responses in each sera. Glycans were efficiently coupled to bovine serum albumin (BSA) at a high density (∼19-24 glycans/BSA) to generate a neoglycoprotein library that was useful in microarray formats that provided results equivalent to those obtained from the Luminex approach. Neoglycoproteins have many uses, including serving as acceptors for glycosyltransferases, as we demonstrate for assays of ST6Gal1 sialyltransferase. These facile and efficient technologies significantly expand the toolbox available to explore glycan-GBP interactions.

摘要

蛋白质对聚糖的特异性识别在许多生物过程和免疫反应中都很重要。在此,我们展示了一种用新型连接子MTZ(添加到生物正交功能四嗪标签上的3-(甲氧基氨基)丙胺)对游离聚糖进行衍生化的通用方法,该方法利用点击化学生成多个聚糖偶联平台。这种衍生化保留了聚糖的完整性,具有可逆性和可量化性,并引入了用于点击偶联的生物正交四嗪标签。通过生物素-聚乙二醇11-反式环辛烯间隔物,ABO-(H)血型MTZ-聚糖文库被有效地偶联到抗生物素蛋白Luminex微球上,生成了一个多重阵列,该阵列可以通过高通量Luminex方法用多种凝集素和抗体进行可重复的检测。我们还快速分析了多个系列稀释的人血清样本中的抗聚糖IgG、IgM和IgA抗体,揭示了每个血清中抗聚糖反应的独特组成。聚糖以高密度(约19-24个聚糖/牛血清白蛋白)有效地偶联到牛血清白蛋白(BSA)上,生成了一个新糖蛋白文库,该文库可用于微阵列形式,提供与Luminex方法相当的结果。新糖蛋白有许多用途,包括作为糖基转移酶的受体,正如我们在ST6Gal1唾液酸转移酶测定中所证明的那样。这些简便高效的技术显著扩展了用于探索聚糖-糖结合蛋白相互作用的工具库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22e9/12123462/bf1e84a8e19f/oc4c02124_0012.jpg

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