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酶促化学合成 N-糖链位置异构体及单克隆抗体和人 C 型凝集素受体对分支选择结合的证据。

Chemoenzymatic Synthesis of N-glycan Positional Isomers and Evidence for Branch Selective Binding by Monoclonal Antibodies and Human C-type Lectin Receptors.

机构信息

CIC biomaGUNE, Glycotechnology Laboratory , Paseo Miramón 182 , 20014 San Sebastian , Spain.

Université Grenoble Alpes, CEA, CNRS, IBS , F-38000 Grenoble , France.

出版信息

ACS Chem Biol. 2018 Aug 17;13(8):2269-2279. doi: 10.1021/acschembio.8b00431. Epub 2018 Jun 21.

Abstract

Here, we describe a strategy for the rapid preparation of pure positional isomers of complex N-glycans to complement an existing array comprising a larger number of N-glycans and smaller glycan structures. The expanded array was then employed to study context-dependent binding of structural glycan fragments by monoclonal antibodies and C-type lectins. A partial enzymatic elongation of semiprotected core structures was combined with the protecting-group-aided separation of positional isomers by preparative HPLC. This methodology, which avoids the laborious chemical differentiation of antennae, was employed for the preparation of eight biantennary N-glycans with Galβ1,4GlcNAc (LN), GalNAcβ1,4GlcNAc (LDN), and GalNAcβ1,4[Fucα1,3]GlcNAc (LDNF) motifs presented on either one or both antennae. Screening of the binding specificities of three anti-Le monoclonal IgM antibodies raised against S. mansoni glycans and three C-type lectin receptors of the innate immune system, namely DC-SIGN, DC-SIGNR, and LSECtin, revealed a surprising context-dependent fine specificity for the recognition of the glycan motifs. Moreover, we observed a striking selection of one individual positional isomer over the other by the C-type lectins tested, underscoring the biological relevance of the structural context of glycan elements in molecular recognition.

摘要

在这里,我们描述了一种快速制备复杂 N-聚糖纯立体异构体的策略,以补充现有的包含更多 N-聚糖和较小聚糖结构的阵列。然后,使用扩展的阵列来研究单克隆抗体和 C 型凝集素对结构糖片段结合的上下文依赖性。半保护核心结构的部分酶延伸与保护基辅助的立体异构体分离相结合,通过制备 HPLC 进行。这种方法避免了繁琐的天线化学分化,用于制备具有 Galβ1,4GlcNAc(LN)、GalNAcβ1,4GlcNAc(LDN)和 GalNAcβ1,4[Fucα1,3]GlcNAc(LDNF)基序的八个双天线 N-聚糖,这些基序分别或同时存在于一个或两个天线中。对针对 S. mansoni 聚糖产生的三种抗-Le 单克隆 IgM 抗体和三种先天免疫系统的 C 型凝集素受体(即 DC-SIGN、DC-SIGNR 和 LSECtin)的结合特异性进行筛选,揭示了对糖基基序识别的惊人的上下文依赖的精细特异性。此外,我们观察到测试的 C 型凝集素对一个立体异构体的惊人选择,突出了糖基元件结构背景在分子识别中的生物学相关性。

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