首页> 外文期刊>Journal of bacteriology >Cloning, Sequencing, and Expression of the Gene Encoding Cyclic 2,3-Diphosphoglycerate Synthetase, the Key Enzyme of Cyclic 2,3-Diphosphoglycerate Metabolism in Methanothermus fervidus
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Cloning, Sequencing, and Expression of the Gene Encoding Cyclic 2,3-Diphosphoglycerate Synthetase, the Key Enzyme of Cyclic 2,3-Diphosphoglycerate Metabolism in Methanothermus fervidus

机译:编码2,3-二磷酸甘油酸合成酶的基因的克隆,测序和表达,Methanothermus fervidus的2,3-二磷酸甘油酸循环代谢的关键酶

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Cyclic 2,3-diphosphoglycerate synthetase (cDPGS) catalyzes the synthesis of cyclic 2,3-diphosphoglycerate (cDPG) by formation of an intramolecular phosphoanhydride bond in 2,3-diphosphoglycerate. cDPG is known to be accumulated to high intracellular concentrations (>300 mM) as a putative thermoadapter in some hyperthermophilic methanogens. For the first time, we have purified active cDPGS from a methanogen, the hyperthermophilic archaeon Methanothermus fervidus, sequenced the coding gene, and expressed it in Escherichia coli. cDPGS purification resulted in enzyme preparations containing two isoforms differing in their electrophoretic mobility under denaturing conditions. Since both polypeptides showed the same N-terminal amino acid sequence and Southern analyses indicate the presence of only one gene coding for cDPGS in M. fervidus, the two polypeptides originate from the same gene but differ by a not yet identified modification. The native cDPGS represents a dimer with an apparent molecular mass of 112 kDa and catalyzes the reversible formation of the intramolecular phosphoanhydride bond at the expense of ATP. The enzyme shows a clear preference for the synthetic reaction: the substrate affinity and the V max of the synthetic reaction are a factor of 8 to 10 higher than the corresponding values for the reverse reaction. Comparison with the kinetic properties of the electrophoretically homogeneous, apparently unmodified recombinant enzyme from E. coli revealed a twofold-higher V max of the enzyme from M. fervidus in the synthesizing direction.
机译:环状2,3-二磷酸甘油酯合成酶(cDPGS)通过在2,3-二磷酸甘油酯中形成分子内磷酸酐键来催化环状2,3-二磷酸甘油酯(cDPG)的合成。已知cDPG在某些高嗜热产甲烷菌中作为推定的热适应剂积累到高细胞内浓度(> 300 mM)。我们首次从产甲烷菌,即超嗜热古细菌 Methanothermus fervidus 中纯化了活性cDPGS,对编码基因进行测序,并在大肠杆菌中表达。 cDPGS纯化导致酶制剂中含有两种在变性条件下电泳迁移率不同的同工型。由于两种多肽均显示相同的N端氨基酸序列,Southern分析表明在 M中仅存在一个编码cDPGS的基因。 Fervidus ,这两个多肽来自相同的基因,但它们之间的差异尚未确定。天然cDPGS代表表观分子量为112 kDa的二聚体,并以ATP为代价催化分子内磷酸酐键的可逆形成。该酶对合成反应表现出明显的偏爱:底物亲和力和合成反应的 V max 比酶的相应值高8至10倍。逆反应。与来自 E的电泳均质,显然未修饰的重组酶的动力学性质比较。大肠揭示了 M酶的 V max 两倍。 Fervidus 的合成方向。

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