Glycobia, Inc., Ithaca, New York 14853, USA.
Biotechnol Bioeng. 2013 Jun;110(6):1550-64. doi: 10.1002/bit.24885. Epub 2013 Mar 26.
There is an urgent need for new tools that enable better understanding of the structure, recognition, metabolism, and biosynthesis of glycans as well as the production of biologically important glycans and glycoconjugates. With the discovery of glycoprotein synthesis in bacteria and functional transfer of glycosylation pathways between species, Escherichia coli cells have become a tractable host for both understanding glycosylation and the underlying glycan code of living cells as well as for expressing glycoprotein therapeutics and vaccines. Here, we review recent efforts to harness natural biological pathways and engineer synthetic designer pathways in bacteria for making complex glycans and conjugating these to lipids and proteins. The result of these efforts has been a veritable transformation of bacteria into living factories for scalable, bottom-up production of complex glycoconjugates by design.
人们迫切需要新的工具,以更好地理解聚糖的结构、识别、代谢和生物合成,以及生物重要聚糖和糖缀合物的生产。随着细菌中糖蛋白合成的发现以及糖基化途径在物种间的功能转移,大肠杆菌细胞已成为理解糖基化以及活细胞中聚糖密码的可行宿主,也成为表达糖蛋白治疗药物和疫苗的宿主。在这里,我们回顾了最近利用细菌中的天然生物途径和工程合成设计途径来制造复杂聚糖并将其与脂质和蛋白质偶联的努力。这些努力的结果是,细菌实际上已经转变为活的工厂,可以按设计进行复杂糖缀合物的可扩展、自下而上的生产。