Barrett Katharine, Dube Danielle H
Department of Chemistry & Biochemistry, Bowdoin College, 6600 College Station, Brunswick, ME 04011 USA.
Isr J Chem. 2023 Feb;63(1-2). doi: 10.1002/ijch.202200050. Epub 2022 Oct 18.
Bacteria coat themselves with a dense array of cell envelope glycans that enhance bacterial fitness and promote survival. Despite the importance of bacterial glycans, their systematic study and perturbation remains challenging. Chemical tools have made important inroads toward understanding and altering bacterial glycans. This review describes how pioneering discoveries from Prof. Carolyn Bertozzi's laboratory inspired our laboratory to develop sugar probes to facilitate the study of bacterial glycans. As described below, we used metabolic glycan labelling to install bioorthogonal reporters into bacterial glycans, ultimately permitting the discovery of a protein glycosylation system, the identification of glycosylation genes, and the development of metabolic glycan inhibitors. Our results have provided an approach to screen bacterial glycans and gain insight into their function, even in the absence of detailed structural information.
细菌会在自身表面包裹一层密集的细胞包膜聚糖,这些聚糖可增强细菌的适应性并促进其存活。尽管细菌聚糖很重要,但对其进行系统研究和扰动仍然具有挑战性。化学工具在理解和改变细菌聚糖方面已取得重要进展。本综述描述了卡罗琳·贝尔托齐教授实验室的开创性发现如何启发我们的实验室开发糖探针,以促进对细菌聚糖的研究。如下所述,我们利用代谢聚糖标记将生物正交报告基团引入细菌聚糖中,最终得以发现一种蛋白质糖基化系统、鉴定糖基化基因并开发代谢聚糖抑制剂。我们的研究结果提供了一种筛选细菌聚糖并深入了解其功能的方法,即使在缺乏详细结构信息的情况下也是如此。