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The MspA porin promotes growth and increases antibiotic susceptibility of both Mycobacterium bovis BCG and Mycobacterium tuberculosis

机译:MSPA Porin促进生长并增加肉毒杆菌BCG和结核分枝杆菌的抗生素易感性

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Porins mediate the diffusion of hydrophilic solutes across the outer membrane of mycobacteria, but the efficiency of this pathway is very low compared to Gram-negative bacteria. To examine the importance of porins in slow-growing mycobacteria, the major porin MspA of Mycobacterium smegmatis was expressed in Mycobacterium tuberculosis and Mycobacterium bovis. Approximately 20 and 35 MspA molecules per?μm2 cell wall were observed in M. tuberculosis and M. bovis BCG, respectively, by electron microscopy and quantitative immunoblot experiments. Surface accessibility of MspA in M. tuberculosis was demonstrated by flow cytometry. Glucose uptake was twofold faster, indicating that the outer membrane permeability of M. bovis BCG to small and hydrophilic solutes was increased by MspA. This significantly accelerated the growth of M. bovis BCG, identifying very slow nutrient uptake as one of the determinants of slow growth in mycobacteria. The susceptibility of both M. bovis BCG and M. tuberculosis to zwitterionic β-lactam antibiotics was substantially enhanced by MspA, decreasing the minimal inhibitory concentration up to 16-fold. Furthermore, M. tuberculosis became significantly more susceptible to isoniazid, ethambutol and streptomycin. Fluorescence with the nucleic acid binding dye SYTO 9 was 10-fold increased upon expression of mspA. These results indicated that MspA not only enhanced the efficiency of the porin pathway, but also that of pathways mediating access to large and/or hydrophobic agents. This study provides the first experimental evidence that porins are important for drug susceptibility of M. tuberculosis.
机译:植物介导亲水溶质的扩散穿过分枝杆菌的外膜,但与革兰氏阴性细菌相比,该途径的效率非常低。为了检查荚氏孔在生长缓慢的分枝杆菌中的重要性,分枝杆菌的主要孔豆荚在结核分枝杆菌和肉杆菌的分枝杆菌和细胞杆菌中表达。通过电子显微镜和定量免疫印象,分别在M.Tuberculosis和M.Bovis BCG中观察到每βμM2细胞壁的约20和35mSPA分子。流式细胞术证明了MSPA中MSPA的表面可访问性。葡萄糖摄取更快,表明MSPA增加了M.BOVIS BCG的外膜渗透性,并通过MSPA增加了小和亲水溶质。这显着加速了M.BOVIS BCG的生长,鉴定了作为分枝杆菌缓慢生长缓慢的决定因素之一的营养增生。 M.Bovis BCG和M.Tuberculosis对两性离子β-ractam抗生素的易感性大大提高了MSPA,降低了最小的抑制浓度高达16倍。此外,M.结核病变得明显易于异喹啉,乙胺醇和链霉素。在MSPA的表达后,具有核酸结合染料的荧光增加了10倍。这些结果表明,MSPA不仅提高了孔隙途径的效率,还具有介导对大型和/或疏水剂的通路的途径。本研究提供了第一种实验证据,即孔林对肺结核的药物易感性很重要。

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