Department of Molecular and Biomedical Sciences, Research Centre for Infectious Diseases, School of Biological Sciences, The University of Adelaide, Adelaide, South Australia, Australia.
Mol Microbiol. 2022 Oct;118(4):403-416. doi: 10.1111/mmi.14973. Epub 2022 Aug 25.
Enterobacterales have developed a specialized outer membrane polysaccharide (enterobacterial common antigen [ECA]). ECA biosynthesis begins on the cytoplasmic side of the inner membrane (IM) where glycosyltransferases sequentially add sugar moieties to form a complete repeat unit which is then translocated across the IM by WzxE before being polymerized into short linear chains by WzyE/WzzE. Research into WecG, the enzyme responsible for generating ECA lipid-II, has not progressed beyond Barr et al. (1988) who described WecG as a membrane protein. Here we revise our understanding of WecG and re-characterize it as a peripherally associated membrane protein. Through the use of Western immunoblotting we show that WecG in Shigella flexneri is maintained to the IM via its three C-terminal helices and further identify key residues in helix II which are critical for this interaction which has allowed us to identify WecG as a GT-E glycosyltransferase. We investigate the possibility of protein complexes and ultimately show that ECA lipid-I maintains WecG to the membrane which is crucial for its function. This research is the first since Barr et al. (1988) to investigate the biochemistry of WecG and reveals possible novel drug targets to inhibit WecG and thus ECA function and cell viability.
肠杆菌目已发展出一种特殊的外膜多糖(肠杆菌共同抗原[ECA])。ECA 的生物合成始于内膜(IM)的细胞质侧,在这里糖基转移酶依次添加糖基以形成完整的重复单元,然后由 WzxE 将其穿过 IM 转运,然后由 WzyE/WzzE 将其聚合成长链。对负责生成 ECA 脂 II 的酶 WecG 的研究尚未超出 Barr 等人(1988 年)的描述,他们将 WecG 描述为一种膜蛋白。在这里,我们修改了对 WecG 的理解,并将其重新定义为一种外周相关的膜蛋白。通过使用 Western 免疫印迹,我们表明在福氏志贺菌中,WecG 通过其三个 C 端螺旋与 IM 保持连接,并进一步鉴定出 II 螺旋中对于这种相互作用至关重要的关键残基,这使我们能够鉴定 WecG 为 GT-E 糖基转移酶。我们研究了蛋白质复合物的可能性,最终表明 ECA 脂 I 将 WecG 保持在膜上,这对于其功能至关重要。这是自 Barr 等人(1988 年)以来对 WecG 的生物化学进行的首次研究,揭示了可能的新型药物靶标,以抑制 WecG 及其功能和细胞活力。