Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne, NE2 4HH, UK.
School of Science, Constructor University, Campus Ring 1, 28759, Bremen, Germany.
Nat Commun. 2023 Aug 5;14(1):4714. doi: 10.1038/s41467-023-40427-2.
Vitamin B (cobalamin) is required for most human gut microbes, many of which are dependent on scavenging to obtain this vitamin. Since bacterial densities in the gut are extremely high, competition for this keystone micronutrient is severe. Contrasting with Enterobacteria, members of the dominant genus Bacteroides often encode several BtuB vitamin B outer membrane transporters together with a conserved array of surface-exposed B-binding lipoproteins. Here we show that the BtuB transporters from Bacteroides thetaiotaomicron form stable, pedal bin-like complexes with surface-exposed BtuG lipoprotein lids, which bind B with high affinities. Closing of the BtuG lid following B capture causes destabilisation of the bound B by a conserved BtuB extracellular loop, causing translocation of the vitamin to BtuB and subsequent transport. We propose that TonB-dependent, lipoprotein-assisted small molecule uptake is a general feature of Bacteroides spp. that is important for the success of this genus in colonising the human gut.
维生素 B(钴胺素)是大多数人类肠道微生物所必需的,其中许多微生物依赖于 scavenging 来获取这种维生素。由于肠道中的细菌密度极高,因此对这种关键微量营养素的竞争非常激烈。与肠杆菌不同,优势属拟杆菌属的成员通常编码几种 BtuB 维生素 B 外膜转运蛋白,以及一组保守的表面暴露的 B 结合脂蛋白。在这里,我们表明,来自脆弱拟杆菌的 BtuB 转运蛋白与表面暴露的 BtuG 脂蛋白盖形成稳定的脚踏-bin 样复合物,该复合物与 B 具有高亲和力结合。B 捕获后 BtuG 盖的关闭导致结合的 B 通过保守的 BtuB 细胞外环失稳,导致维生素向 BtuB 的易位和随后的运输。我们提出,TonB 依赖性、脂蛋白辅助的小分子摄取是拟杆菌属的一个普遍特征,这对于该属在人类肠道中定植的成功非常重要。