Faculty of Science and Engineering, Groningen, Biomolecular Sciences and Biotechnology, Membrane Enzymology Group, University of Groningen, 9747 AG, Groningen, The Netherlands.
Sosei Heptares, Steinmetz Building, Granta Park, Great Abington, Cambridge, CB21 6DG, UK.
Nat Commun. 2024 Mar 23;15(1):2626. doi: 10.1038/s41467-024-46917-1.
BacA is a mycobacterial ATP-binding cassette (ABC) transporter involved in the translocation of water-soluble compounds across the lipid bilayer. Whole-cell-based assays have shown that BacA imports cobalamin as well as unrelated hydrophilic compounds such as the antibiotic bleomycin and the antimicrobial peptide Bac7 into the cytoplasm. Surprisingly, there are indications that BacA also mediates the export of different antibacterial compounds, which is difficult to reconcile with the notion that ABC transporters generally operate in a strictly unidirectional manner. Here we resolve this conundrum by developing a fluorescence-based transport assay to monitor the transport of cobalamin across liposomal membranes. We find that BacA transports cobalamin in both the import and export direction. This highly unusual bidirectionality suggests that BacA is mechanistically distinct from other ABC transporters and facilitates ATP-driven diffusion, a function that may be important for the evolvability of specific transporters, and may bring competitive advantages to microbial communities.
BacA 是一种分枝杆菌 ABC 转运蛋白,参与水溶性化合物穿过脂质双层的转运。基于全细胞的测定表明,BacA 将钴胺素以及其他亲水性化合物如抗生素博来霉素和抗菌肽 Bac7 导入细胞质。令人惊讶的是,有迹象表明 BacA 也介导不同抗菌化合物的外排,这与 ABC 转运体通常以严格的单向方式运作的观点难以协调。在这里,我们通过开发一种荧光基转运测定法来监测钴胺素穿过脂质体膜的转运,从而解决了这个难题。我们发现 BacA 以输入和输出的方向转运钴胺素。这种非常不寻常的双向性表明,BacA 在机制上与其他 ABC 转运体不同,促进了 ATP 驱动的扩散,这种功能可能对特定转运体的可进化性很重要,并可能为微生物群落带来竞争优势。