Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Groningen, The Netherlands.
Structural Biology and Biophysics, Biozentrum-University of Basel, Basel, Switzerland.
Nature. 2020 Apr;580(7803):409-412. doi: 10.1038/s41586-020-2072-8. Epub 2020 Mar 25.
Mycobacterium tuberculosis (Mtb) is an obligate human pathogen and the causative agent of tuberculosis. Although Mtb can synthesize vitamin B (cobalamin) de novo, uptake of cobalamin has been linked to pathogenesis of tuberculosis. Mtb does not encode any characterized cobalamin transporter; however, the gene rv1819c was found to be essential for uptake of cobalamin. This result is difficult to reconcile with the original annotation of Rv1819c as a protein implicated in the transport of antimicrobial peptides such as bleomycin. In addition, uptake of cobalamin seems inconsistent with the amino acid sequence, which suggests that Rv1819c has a bacterial ATP-binding cassette (ABC)-exporter fold. Here, we present structures of Rv1819c, which reveal that the protein indeed contains the ABC-exporter fold, as well as a large water-filled cavity of about 7,700 Å, which enables the protein to transport the unrelated hydrophilic compounds bleomycin and cobalamin. On the basis of these structures, we propose that Rv1819c is a multi-solute transporter for hydrophilic molecules, analogous to the multidrug exporters of the ABC transporter family, which pump out structurally diverse hydrophobic compounds from cells.
结核分枝杆菌(Mtb)是一种专性的人类病原体,也是结核病的病原体。尽管 Mtb 可以从头合成维生素 B(钴胺素),但钴胺素的摄取与结核病的发病机制有关。Mtb 不编码任何特征化的钴胺素转运蛋白;然而,rv1819c 基因被发现对钴胺素的摄取是必需的。这一结果与 Rv1819c 最初被注释为参与抗生素肽(如博来霉素)转运的蛋白质的原始注释很难协调一致。此外,钴胺素的摄取似乎与氨基酸序列不一致,这表明 Rv1819c 具有细菌 ATP 结合盒(ABC)-外排泵折叠。在这里,我们展示了 Rv1819c 的结构,这些结构表明该蛋白确实含有 ABC-外排泵折叠,以及一个大约 7700 Å 的大含水腔,这使得该蛋白能够转运不相关的亲水性化合物博来霉素和钴胺素。基于这些结构,我们提出 Rv1819c 是一种亲水分子的多溶质转运蛋白,类似于 ABC 转运蛋白家族的多药外排泵,它将结构多样的疏水性化合物从细胞中泵出。