首页> 外文期刊>Journal of bacteriology >The Calvin cycle enzyme phosphoglycerate kinase of Xanthobacter flavus required for autotrophic CO2 fixation is not encoded by the cbb operon.
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The Calvin cycle enzyme phosphoglycerate kinase of Xanthobacter flavus required for autotrophic CO2 fixation is not encoded by the cbb operon.

机译:自养CO2固定所需的黄杆菌黄单胞菌的卡尔文循环酶磷酸甘油酸激酶不是由cbb操纵子编码的。

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During autotrophic growth of Xanthobacter flavus, energy derived from the oxidation of hydrogen methanol or formate is used to drive the assimilation of CO2 via the Calvin cycle. The genes encoding the Calvin cycle enzymes are organized in the cbb operon, which is expressed only during autotrophic growth. Although it has been established that the transcriptional activator CbbR is required for the expression of the cbb operon, it is unclear whether CbbR is the only factor contributing to the regulation of the cbb operon. This paper describes the isolation of X. flavus mutants which were affected in the regulation of the cbb operon. One of the mutant strains was subject to an enhanced repression of the cbb operon promoter by the gluconeogenic substrate succinate and in addition failed to grow autotrophically. The rate of growth of the X. flavus mutant on succinate-containing medium was lower than that of the wild-type strain, but rates of growth on medium supplemented with gluconate were identical. A genomic library of X. flavus was constructed and was used to complement the mutant strain. The nucleotide sequence of the DNA fragment required to restore autotrophic growth of the X. flavus mutant was determined. One open reading frame that displayed extensive similarities to phosphoglycerate kinase-encoding genes (pgk) was identified. The X. flavus mutant lacked phosphoglycerate kinase activity following growth on gluconate or succinate. Introduction of the pgk gene into the X. flavus mutant partially restored the activity of phosphoglycerate kinase. Induction of the cbb operon of the X. flavus wild-type strain resulted in a simultaneous and parallel increase in the activities of ribulose-1,5-biphosphate carboxylase and phosphoglycerate kinase, whereas the latter activity remained absent in the X. flavus pgk mutant. It is concluded that X. flavus employees a single phosphoglycerate kinase enzyme and this is not encoded within the cbb operon.
机译:在黄杆菌的自养生长过程中,来自甲醇氢或甲酸酯氢氧化的能量被用来驱动卡尔文循环吸收CO2。编码卡尔文循环酶的基因组织在cbb操纵子中,仅在自养生长期间表达。尽管已经确定转录激活因子CbbR是表达cbb操纵子所必需的,但是尚不清楚CbbR是否是促成cbb操纵子调节的唯一因素。本文介绍了黄杆菌突变体的分离,该突变体在cbb操纵子的调控中受到影响。其中一种突变菌株受到糖异生底物琥珀酸酯对cbb操纵子启动子的抑制作用增强,此外还不能自养生长。黄曲霉突变体在含琥珀酸盐的培养基上的生长速率低于野生型菌株,但在补充葡萄糖酸盐的培养基上的生长速率相同。构建了黄曲霉的基因组文库,并将其用于补充突变菌株。确定了恢复黄曲霉突变体自养生长所需的DNA片段的核苷酸序列。鉴定出一个开放阅读框,其显示出与磷酸甘油酸激酶编码基因(pgk)广泛相似。黄葡萄球菌突变体在葡萄糖酸盐或琥珀酸盐上生长后缺乏磷酸甘油酸激酶活性。将pgk基因引入黄曲霉突变体可部分恢复磷酸甘油酸激酶的活性。黄曲霉野生型菌株的cbb操纵子的诱导导致核糖-1,5-二磷酸羧化酶和磷酸甘油酸激酶的活性同时并发增加,而黄曲霉pgk突变体中却没有后者的活性。 。可以得出结论,黄曲霉雇员拥有一种磷酸甘油酸激酶激酶,并且在cbb操纵子中未编码。

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