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通过酶化学全合成方法得到含有不同唾液酸形式和各种脂肪酸链的 GM3 神经节苷脂。

Chemoenzymatic Total Synthesis of GM3 Gangliosides Containing Different Sialic Acid Forms and Various Fatty Acyl Chains.

机构信息

Department of Chemistry, University of California, One Shields Avenue, Davis, California 95616, United States.

Department of Chemistry, Georgia State University, Atlanta, Georgia 30303, United States.

出版信息

J Org Chem. 2021 Jul 2;86(13):8672-8682. doi: 10.1021/acs.joc.1c00450. Epub 2021 Jun 21.

Abstract

Gangliosides are sialic acid-containing glycosphingolipids that have been found in the cell membranes of all vertebrates. Their important biological functions are contributed by both the glycan and the ceramide lipid components. GM3 is a major ganglioside and a precursor for many other more complex gangliosides. To obtain structurally diverse GM3 gangliosides containing various sialic acid forms and different fatty acyl chains in low cost, an improved process was developed to chemically synthesize lactosyl sphingosine from an inexpensive l-serine derivative. It was then used to obtain GM3 sphingosines from diverse modified sialic acid precursors by an efficient one-pot multienzyme sialylation system containing sialyltransferase 3 (PmST3) with generation of sugar nucleotides. A highly effective chemical acylation and facile C18-cartridge purification process was then used to install fatty acyl chains of varying lengths and different modifications. The chemoenzymatic method represents a powerful total synthetic strategy to access a library of structurally defined GM3 gangliosides to explore their functions.

摘要

神经节苷脂是一种含有唾液酸的糖脂,已在所有脊椎动物的细胞膜中发现。其重要的生物学功能既由聚糖部分,也由神经酰胺脂质部分贡献。GM3 是一种主要的神经节苷脂,也是许多其他更复杂的神经节苷脂的前体。为了以低成本获得结构多样的 GM3 神经节苷脂,其中含有各种唾液酸形式和不同的脂肪酸链,开发了一种改进的化学合成方法,从廉价的 L-丝氨酸衍生物中化学合成乳糖基神经鞘氨醇。然后,通过含有唾液酸转移酶 3(PmST3)的高效一锅多酶唾液酸化系统,从各种修饰的唾液酸前体中获得 GM3 神经鞘氨醇,同时生成糖核苷酸。然后使用高效的化学酰化和简单的 C18 柱纯化过程来安装不同长度和不同修饰的脂肪酸链。这种化学酶法代表了一种强大的全合成策略,可以获得一系列结构明确的 GM3 神经节苷脂文库,以探索它们的功能。

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