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Molecular Characterization and Expression of Pyruvate Formate-Lyase-Activating Enzyme in a Ruminal Bacterium Streptococcus bovis

机译:瘤胃细菌牛链球菌丙酮酸甲酸酯酶活化酶的分子表征和表达

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摘要

To clarify the significance of the activation of pyruvate formate-lyase (PFL) by PFL-activating enzyme (PFL-AE) in Streptococcus bovis, the molecular properties and gene expression of PFL-AE were investigated. S. bovis PFL-AE was deduced to consist of 261 amino acids with a molecular mass of 29.9 kDa and appeared to be a monomer protein. Similar to Escherichia coli PFL-AE, S. bovis PFL-AE required Fe2+ for activity. The gene encoding PFL-AE (act) was found to be polycistronic, and the PFL gene (pfl) was not included. However, the act mRNA level changed in parallel with the pfl mRNA level, responding to growth conditions, and the change was contrary to the change in the lactate dehydrogenase (LDH) mRNA level. PFL-AE synthesis appeared to change in parallel with PFL synthesis. Introduction of a recombinant plasmid containing S. bovis pfl and the pfl promoter into S. bovis did not affect formate and lactate production, which suggests that the activity of the pfl promoter is low. When the pfl promoter was replaced by the S. bovis ldh promoter, PFL was overexpressed, which caused an increase in the formate-to-lactate ratio. However, when PFL-AE was overexpressed, the formate-to-lactate ratio did not change, suggesting that PFL-AE was present at a level that was high enough to activate PFL. When both PFL-AE and PFL were overexpressed, the formate-to-lactate ratio further increased. It is conceivable that LDH activity is much higher than PFL activity, which may explain why the formate-to-lactate ratio is usually low.
机译:为了阐明牛链球菌中PFL活化酶(PFL-AE)活化丙酮酸甲酸酯裂解酶(PFL)的重要性,研究了PFL-AE的分子特性和基因表达。推断出牛链球菌PFL-AE由261个氨基酸组成,分子量为29.9kDa,似乎是单体蛋白。与大肠杆菌PFL-AE相似,牛链球菌PFL-AE活性需要Fe 2 + 。发现编码PFL-AE(act)的基因是多顺反子,不包括PFL基因(pfl)。但是,act mRNA的水平与pfl mRNA的水平平行变化,响应生长条件,并且该变化与乳酸脱氢酶(LDH)mRNA水平的变化相反。 PFL-AE合成似乎与PFL合成同时发生变化。将含有牛链球菌pfl和pfl启动子的重组质粒导入牛链球菌并不影响甲酸和乳酸盐的产生,这表明pfl启动子的活性较低。当用牛链球菌ldh启动子代替pfl启动子时,PFL过表达,导致甲酸酯/乳酸酯比增加。但是,当PFL-AE过表达时,甲酸酯/乳酸酯比没有变化,这表明PFL-AE的含量足以激活PFL。当PFL-AE和PFL均过表达时,甲酸酯/乳酸酯比进一步增加。可以想象LDH活性远高于PFL活性,这可以解释为什么甲酸酯/乳酸酯比通常较低。

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