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军团氨糖酸的生物合成及其掺入糖缀合物的过程。

Biosynthesis of Legionaminic Acid and Its Incorporation Into Glycoconjugates.

作者信息

Schoenhofen Ian C, Young N Martin, Gilbert Michel

机构信息

National Research Council Canada, Human Health Therapeutics Portfolio, Ottawa, ON, Canada.

National Research Council Canada, Human Health Therapeutics Portfolio, Ottawa, ON, Canada.

出版信息

Methods Enzymol. 2017;597:187-207. doi: 10.1016/bs.mie.2017.06.042. Epub 2017 Sep 9.

Abstract

Legionaminic acids are analogs of sialic acid that occur in cell surface glycoconjugates of several bacteria. Because legionaminic acids share the same stereochemistry as sialic acid but differ at C7 and C9, they are interesting analogs to probe the impact of varying exocyclic moieties (C7-C9) on biological activities such as susceptibilities to sialidases, interactions with Siglecs and immunogenicity. There are currently no reports on the bacterial enzymes that transfer legionaminic acids to these cell surface glycoconjugates, but some mammalian and bacterial sialyltransferases display donor promiscuity and can use CMP-Leg5,7Ac efficiently enough to transfer Leg5,7Ac to their natural acceptor glycans. When the natural activity with CMP-Leg5,7Ac is significant but relatively low, an alternate strategy has been to engineer versions with improved activity to transfer Leg5,7Ac. Importantly, we have found that some bacterial sialyltransferases are very efficient for transferring Leg5,7Ac to small synthetic glycans with various aglycones. The two mammalian sialyltransferases that have been tested so far (porcine ST3Gal1 and human ST6Gal1) were found to be more efficient than the bacterial sialyltransferases for the modification of glycoproteins. We provide a review of the sialyltransferases selected to modify different types of glycoconjugates with Leg5,7Ac, including small synthetic acceptors, glycolipids, and glycoproteins. In the first part, we also propose an optimized biosynthetic pathway for in vitro preparation of the donor CMP-Leg5,7Ac, based on enzymes selected from two bacteria that naturally produce legionaminic acid.

摘要

军团氨糖酸是唾液酸的类似物,存在于多种细菌的细胞表面糖缀合物中。由于军团氨糖酸与唾液酸具有相同的立体化学结构,但在C7和C9位有所不同,它们是有趣的类似物,可用于探究不同的环外基团(C7 - C9)对诸如唾液酸酶敏感性、与唾液酸结合免疫球蛋白样凝集素(Siglecs)的相互作用及免疫原性等生物学活性的影响。目前尚无关于将军团氨糖酸转移至这些细胞表面糖缀合物的细菌酶的报道,但一些哺乳动物和细菌的唾液酸转移酶具有供体选择性,并且能够足够高效地利用CMP - Leg5,7Ac将Leg5,7Ac转移至其天然受体聚糖。当与CMP - Leg5,7Ac的天然活性显著但相对较低时,另一种策略是设计具有更高活性以转移Leg5,7Ac的变体。重要的是,我们发现一些细菌唾液酸转移酶能非常高效地将Leg5,7Ac转移至带有各种糖苷配基的小型合成聚糖。到目前为止所测试的两种哺乳动物唾液酸转移酶(猪ST3Gal1和人ST6Gal1)在修饰糖蛋白方面比细菌唾液酸转移酶更高效。我们综述了被选择用于用Leg5,7Ac修饰不同类型糖缀合物的唾液酸转移酶,包括小型合成受体、糖脂和糖蛋白。在第一部分中,我们还基于从两种天然产生军团氨糖酸的细菌中选择的酶,提出了一种用于体外制备供体CMP - Leg5,7Ac的优化生物合成途径。

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