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pckA-deficient Mycobacterium bovis BCG shows attenuated virulence in mice and in macrophages

机译:Pcka缺乏的分枝杆菌BOVIS BCG在小鼠和巨噬细胞中显示出衰减的毒力

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Phosphoenolpyruvate carboxykinase (PEPCK) catalyses the reversible decarboxylation and phosphorylation of oxaloacetate (OAA) to form phosphoenolpyruvate (PEP). In this study, the regulation of the PEPCK-encoding gene pckA was examined through the evaluation of green fluorescent protein expression driven by the pckA promoter. The results showed that pckA was upregulated by acetate or palmitate but downregulated by glucose. Deletion of the pckA gene of Mycobacteriumbovis BCG led to a reduction in the capacity of the bacteria to infect and survive in macrophages. Moreover, mice infected with ΔpckA BCG were able to reduce the bacterial load much more effectively than mice infected with the parental wild-type bacteria. This attenuated virulence was reflected in the degree of pathology, where granuloma formation was diminished both in numbers and degree. The data indicate that PEPCK activity is important during establishment of infection. Whether its role is in the gluconeogenic pathway for carbohydrate formation or in the conversion of PEP to OAA to maintain the TCA cycle remains to be determined.
机译:磷酸丙酮酸羧基酶(PEPCK)催化氧乙酸酯(OAA)的可逆脱羧和磷酸化,形成磷酸丙酯(PEP)。在该研究中,通过评估PCKA启动子驱动的绿色荧光蛋白表达来检查PEPCK编码基因PCKA的调节。结果表明,PCKA通过乙酸盐或棕榈酸棕榈酸上上调,但通过葡萄糖下调。缺失霉菌基因菌BCG的PCKA基因导致细菌的能力降低,感染和存活巨噬细胞。此外,感染ΔPckaBCG的小鼠能够比父母野生型细菌感染的小鼠更有效地减少细菌负荷。这种衰减的毒力反映在病理学的程度上,其中粒状形成在数量和程度上均减少。数据表明,在建立感染期间PEPCK活动很重要。它的作用是在碳水化合物形成的葡糖原途径中,或在PEP转化为OAA以维持TCA循环仍有待确定。

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