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Partial Complementation of Sinorhizobium meliloti bacA Mutant Phenotypes by the Mycobacterium tuberculosis BacA Protein

机译:结核分枝杆菌BacA蛋白对苜蓿中华根瘤菌bacA突变表型的部分补充

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摘要

The Sinorhizobium meliloti BacA ABC transporter protein plays an important role in its nodulating symbiosis with the legume alfalfa (Medicago sativa). The Mycobacterium tuberculosis BacA homolog was found to be important for the maintenance of chronic murine infections, yet its in vivo function is unknown. In the legume plant as well as in the mammalian host, bacteria encounter host antimicrobial peptides (AMPs). We found that the M. tuberculosis BacA protein was able to partially complement the symbiotic defect of an S. meliloti BacA-deficient mutant on alfalfa plants and to protect this mutant in vitro from the antimicrobial activity of a synthetic legume peptide, NCR247, and a recombinant human β-defensin 2 (HBD2). This finding was also confirmed using an M. tuberculosis insertion mutant. Furthermore, M. tuberculosis BacA-mediated protection of the legume symbiont S. meliloti against legume defensins as well as HBD2 is dependent on its attached ATPase domain. In addition, we show that M. tuberculosis BacA mediates peptide uptake of the truncated bovine AMP, Bac71-16. This process required a functional ATPase domain. We therefore suggest that M. tuberculosis BacA is important for the transport of peptides across the cytoplasmic membrane and is part of a complete ABC transporter. Hence, BacA-mediated protection against host AMPs might be important for the maintenance of latent infections.
机译:苜蓿中华根瘤菌BacA ABC转运蛋白在其与豆科苜蓿(Medicago sativa)的结节共生中起重要作用。发现结核分枝杆菌BacA同源物对于维持慢性鼠类感染很重要,但其体内功能尚不清楚。在豆类植物以及哺乳动物宿主中,细菌会遇到宿主抗菌肽(AMPs)。我们发现结核分枝杆菌BacA蛋白能够部分补充苜蓿植物上苜蓿链球菌BacA缺陷型突变体的共生缺陷,并能在体外保护该突变体免受合成豆类多肽NCR247和重组人β-防御素2(HBD2)。使用结核分枝杆菌插入突变体也证实了这一发现。此外,结核分枝杆菌BacA介导的豆科共生菌S. meliloti对豆类防御素以及HBD2的保护取决于其附着的ATPase结构域。此外,我们显示结核分枝杆菌BacA介导截短的牛AMP Bac71-16的肽摄取。此过程需要功能性ATPase域。因此,我们建议结核分枝杆菌BacA对于跨细胞质膜的肽运输很重要,并且是完整ABC转运蛋白的一部分。因此,针对宿主AMP的BacA介导的保护对于潜在感染的维持可能很重要。

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