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Structure and transcriptional regulation of the gene encoding pyruvate formate-lyase of a ruminal bacterium, Streptococcus bovis

机译:芦苇甲酸盐蛋白酶蛋白酶蛋白酶,链球菌(Streptococcus Bovis)的结构和转录调节

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Summary: The gene (pfl) encoding pyruvate formate-lyase (Pfl) from Streptococcus bovis was sequenced. The deduced amino acid sequence of Pfl was similar to Streptococcus mutans Pfl, and included the conserved regions necessary for free-radical formation and a catalytic site. The Pfl of S. bovis appeared to be a free-radical-containing enzyme because of its dioxygen sensitivity and its amino acid sequence similarity with the Escherichia coli enzyme. The pfl mRNA of S. bovis was approximately 2·3 kb and was transcribed in a monocistronic fashion. When cells were grown in batch culture at pH 6·9, the level of pfl transcript increased as the growth phase changed from exponential growth to stationary phase. This result was in constrast to the previous observation that the level of lactate dehydrogenase (Ldh) mRNA decreased during the later stages of growth. Continuous culture experiments conducted at pH 6·9 under glucose-limited and ammonia-limited conditions revealed that pfl mRNA was decreased by an excess supply of glucose, as well as by a high growth rate. On the contrary, ldh mRNA increased when excess glucose was supplied and the growth rate was high. The amount of pfl mRNA in cells was lower at pH 4·5 than pH 6·9, whereas the level of ldh mRNA was higher at pH 4·5. This result was consistent with the amounts of Pfl and Ldh in cells and the proportion of formate and lactate produced. These results support the hypothesis that S. bovis regulates Pfl and Ldh synthesis at the transcriptional level in response to growth conditions.
机译:发明内容:测序编码丙酮酸甲酸甲酸盐酶(PFL)的基因(PFL)测序。 PFL的推导的氨基酸序列类似于链球菌MutAns PFL,并包括自由基形成和催化位点所需的保守区域。由于其与大肠杆菌酶的二恶英敏感性及其氨基酸序列相似,肉叶的PFL似乎是含自由基酶。 S. Bovis的PFL mRNA约为2·3kb,以单级方式转录。当细胞在pH6·9处的分批培养物中生长时,随着生长相从指数增长变为固定相,PFL转录物的水平增加。该结果是对先前观察的约束,即乳酸脱氢酶(LDH)mRNA的水平在生长的后期减少。在葡萄糖限制和氨限制条件下在pH6·9处进行的连续培养实验表明,通过过量的葡萄糖供应,以及高生长速率降低PFL mRNA。相反,当供应过量的葡萄糖并且增长率高时,LDH mRNA增加。在pH 4·5的pH 4·9处细胞中PF1 mRNA的量较低,而LDH mRNA的水平在pH 4·5时较高。该结果与细胞中的PFL和LDH的量一致,并产生的甲酸盐和乳酸的比例。这些结果支持糖脂调节转录水平在转录水平的PFL和LDH合成的假设中的假设。

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