首页> 外文期刊>Journal of bacteriology >Pyruvate Carboxylase Plays a Crucial Role in Carbon Metabolism of Extra- and Intracellularly Replicating Listeria monocytogenes
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Pyruvate Carboxylase Plays a Crucial Role in Carbon Metabolism of Extra- and Intracellularly Replicating Listeria monocytogenes

机译:丙酮酸羧化酶在细胞外和细胞内复制李斯特菌的碳代谢中起关键作用

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摘要

The human pathogen L. monocytogenes is a facultatively intracellular bacterium that survives and replicates in the cytosol of many mammalian cells. The listerial metabolism, especially under intracellular conditions, is still poorly understood. Recent studies analyzed the carbon metabolism of L. monocytogenes by the 13C isotopologue perturbation method in a defined minimal medium containing [U-13C6]glucose. It was shown that these bacteria produce oxaloacetate mainly by carboxylation of pyruvate due to an incomplete tricarboxylic acid cycle. Here, we report that a pycA insertion mutant defective in pyruvate carboxylase (PYC) still grows, albeit at a reduced rate, in brain heart infusion (BHI) medium but is unable to multiply in a defined minimal medium with glucose or glycerol as a carbon source. Aspartate and glutamate of the pycA mutant, in contrast to the wild-type strain, remain unlabeled when [U-13C6]glucose is added to BHI, indicating that the PYC-catalyzed carboxylation of pyruvate is the predominant reaction leading to oxaloacetate in L. monocytogenes. The pycA mutant is also unable to replicate in mammalian cells and exhibits high virulence attenuation in the mouse sepsis model.
机译:人类病原体 L。单核细胞增生病是一种兼性的细胞内细菌,可在许多哺乳动物细胞的细胞质中存活并复制。对李斯特菌的代谢,特别是在细胞内条件下,仍知之甚少。最近的研究分析了 L的碳代谢。在定义的包含[U- 13 C 6 ]葡萄糖的基本培养基中,通过 13 C同位素同位素微扰法对单核细胞增生进行了分析。结果表明,由于不完整的三羧酸循环,这些细菌主要通过丙酮酸的羧化产生草酰乙酸。在这里,我们报道在丙酮酸羧化酶(PYC)中有缺陷的 pycA 插入突变体在脑心浸液(BHI)培养基中虽然以降低的速率生长,但仍会生长,但无法在定义的基本培养基中繁殖以葡萄糖或甘油为碳源。与野生型菌株相反, pycA 突变体的天冬氨酸和谷氨酸在[U- 13 C 6 ]葡萄糖为添加到BHI中,表明丙酮酸的PYC催化羧化是导致 L的草酰乙酸的主要反应。单核细胞增生 pycA 突变体也无法在哺乳动物细胞中复制,并且在小鼠败血症模型中表现出高毒力衰减。

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