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Metabolic glycoengineering: Sialic acid and beyond

机译:代谢糖工程:唾液酸及其他

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摘要

This report provides a perspective on metabolic glycoengineering methodology developed over the past two decades that allows natural sialic acids to be replaced with chemical variants in living cells and animals. Examples are given demonstrating how this technology provides the glycoscientist with chemical tools that are beginning to reproduce Mother Nature's control over complex biological systems – such as the human brain – through subtle modifications in sialic acid chemistry. Several metabolic substrates (e.g., ManNAc, Neu5Ac, and CMP-Neu5Ac analogs) can be used to feed flux into the sialic acid biosynthetic pathway resulting in numerous – and sometime quite unexpected – biological repercussions upon nonnatural sialoside display in cellular glycans. Once on the cell surface, ketone-, azide-, thiol-, or alkyne-modified glycans can be transformed with numerous ligands via bioorthogonal chemoselective ligation reactions, greatly increasing the versatility and potential application of this technology. Recently, sialic acid glycoengineering methodology has been extended to other pathways with analog incorporation now possible in surface-displayed GalNAc and fucose residues as well as nucleocytoplasmic O-GlcNAc-modified proteins. Finally, recent efforts to increase the “druggability” of sugar analogs used in metabolic glycoengineering, which have resulted in unanticipated “scaffold-dependent” activities, are summarized.
机译:该报告提供了过去二十年来开发的代谢糖工程方法的观点,该方法可以将天然唾液酸替换为活细胞和动物中的化学变异体。举例说明了该技术如何为糖科学家提供化学工具,这些化学工具开始通过对唾液酸化学的微妙修改来重现大自然对复杂生物系统(例如人脑)的控制。几种代谢底物(例如,ManNAc,Neu5Ac和CMP-Neu5Ac类似物)可用于将通量注入唾液酸生物合成途径,从而在细胞聚糖中显示非天然唾液甙后产生许多(有时是非常出乎意料的)生物影响。一旦进入细胞表面,即可通过生物正交化学选择性连接反应用大量配体转化酮,叠氮化物,硫醇或炔烃修饰的聚糖,从而大大提高了该技术的多功能性和潜在应用。最近,唾液酸糖工程学方法已经扩展到其他途径,现在可以在表面展示的GalNAc和岩藻糖残基以及核质O-GlcNAc修饰的蛋白中掺入类似物。最后,总结了最近的努力,这些努力增加了用于代谢糖工程的糖类似物的“可吸收性”,这导致了意想不到的“支架依赖性”活性。

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