Department of Biotechnology, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal-721302, India.
Microbiology (Reading). 2022 Oct;168(10). doi: 10.1099/mic.0.001260.
Metals often act as a facilitator in the proliferation and persistence of antibiotic resistance. Efflux pumps play key roles in the co-selection of metal and antibiotic resistance. Here, we report the ability of a putative nickel/cobalt transporter (NiCoT family), Rv2856 or NicT of (), to transport metal and antibiotics and identified some key amino acid residues that are important for its function. Ectopic expression of NicT in CS109 resulted in the increase of intracellular nickel uptake. Additionally, enhanced tolerance towards several antibiotics (norfloxacin, sparfloxacin, ofloxacin, gentamicin, nalidixic acid and isoniazid) was observed with NicT overexpression in and . A comparatively lower intracellular accumulation of norfloxacin upon NicT overexpression than that of the cells without NicT indicated the involvement of NicT in an active efflux process. Although expression of NicT did not alter the sensitivity towards kanamycin, doxycycline, tetracycline, apramycin, neomycin and ethambutol, the presence of a sub-inhibitory dose of Ni resulted in the manifestation of low-level tolerance towards these drugs. Further, substitution of four residues (H77I, D82I, H83L and D227I) in the conserved regions of NicT by isoleucine and leucine resulted in reduced to nearly complete loss of the transport function for both metals and antimicrobials. Therefore, the study suggests that nickel transporter Rv2856/NicT may actively export different drugs and the presence of nickel might drive the cross-resistance to some of the antibiotics.
金属通常在抗生素耐药性的增殖和持续中起促进作用。外排泵在金属和抗生素耐药性的共同选择中起关键作用。在这里,我们报告了一种假定的镍/钴转运蛋白(NiCoT 家族),()的 Rv2856 或 NicT,能够转运金属和抗生素,并确定了一些对其功能很重要的关键氨基酸残基。NicT 在 CS109 中的异位表达导致细胞内镍摄取增加。此外,在 和 中过表达 NicT 时,观察到对几种抗生素(诺氟沙星、司帕沙星、氧氟沙星、庆大霉素、萘啶酸和异烟肼)的耐受性增强。与没有 NicT 的细胞相比,NicT 过表达时诺氟沙星的细胞内积累较低,表明 NicT 参与了主动外排过程。尽管 NicT 的表达没有改变对卡那霉素、强力霉素、四环素、大观霉素、新霉素和乙胺丁醇的敏感性,但亚抑制剂量的 Ni 的存在导致对这些药物表现出低水平的耐受性。此外,在 NicT 的保守区域中替换四个残基(H77I、D82I、H83L 和 D227I)为异亮氨酸和亮氨酸,导致对金属和抗菌药物的转运功能降低至几乎完全丧失。因此,该研究表明镍转运蛋白 Rv2856/NicT 可能主动外排不同的药物,并且镍的存在可能导致对一些抗生素的交叉耐药性。