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甲醇营养型芽孢杆菌核酮糖单磷酸循环中的 6-磷酸果糖激酶和核酮糖-5-磷酸 3-差向异构酶。

6-Phosphofructokinase and ribulose-5-phosphate 3-epimerase in methylotrophic Bacillus methanolicus ribulose monophosphate cycle.

机构信息

Department of Biotechnology and Nanomedicine, SINTEF Materials and Chemistry, Postboks 4760 Sluppen, 7465, Trondheim, Norway.

Department of Biotechnology, Norwegian University of Science and Technology, Høgskoleringen 5, 7034, Trondheim, Norway.

出版信息

Appl Microbiol Biotechnol. 2017 May;101(10):4185-4200. doi: 10.1007/s00253-017-8173-0. Epub 2017 Feb 17.

Abstract

D-Ribulose-5-phosphate-3-epimerase (RPE) and 6-phosphofructokinase (PFK) catalyse two reactions in the ribulose monophosphate (RuMP) cycle in Bacillus methanolicus. The B. methanolicus wild-type strain MGA3 possesses two putative rpe and pfk genes encoded on plasmid pBM19 (rpe1-MGA3 and pfk1-MGA3) and on the chromosome (rpe2-MGA3 and pfk2-MGA3). The wild-type strain PB1 also encodes putative rpe and pfk genes on plasmid pBM20 (rpe1-PB1 and pfk1-PB1*); however, it only harbours a chromosomal pfk gene (pfk2-PB1). Transcription of the plasmid-encoded genes was 10-fold to 15-fold upregulated in cells growing on methanol compared to mannitol, while the chromosomal genes were transcribed at similar levels under both conditions in both strains. All seven gene products were recombinantly produced in Escherichia coli, purified and biochemically characterized. All three RPEs were active as hexamers, catalytically stimulated by Mg and Mn and displayed similar K' values (56-75 μM) for ribulose 5-phosphate. Rpe2-MGA3 showed displayed 2-fold lower V (49 U/mg) and a significantly reduced thermostability compared to the two Rpe1 proteins. Pfk1-PB1* was shown to be non-functional. The PFKs were active both as octamers and as tetramers, were catalytically stimulated by Mg and Mn, and displayed similar thermostabilities. The PFKs have similar K values for fructose 6-phosphate (0.61-0.94 μM) and for ATP (0.38-0.82 μM), while Pfk1-MGA3 had a 2-fold lower V (6.3 U/mg) compared to the two Pfk2 proteins. Our results demonstrate that MGA3 and PB1 exert alternative solutions to plasmid-dependent methylotrophy, including genetic organization, regulation, and biochemistry of RuMP cycle enzymes.

摘要

核糖-5-磷酸-3-差向异构酶(RPE)和 6-磷酸果糖激酶(PFK)催化芽孢杆菌甲醇中核酮糖单磷酸(RuMP)循环中的两个反应。野生型菌株 MGA3 的 B. 甲醇携带两个假定的 rpe 和 pfk 基因编码在质粒 pBM19(rpe1-MGA3 和 pfk1-MGA3)和染色体上(rpe2-MGA3 和 pfk2-MGA3)。野生型菌株 PB1 也在质粒 pBM20 上编码假定的 rpe 和 pfk 基因(rpe1-PB1 和 pfk1-PB1*);然而,它只在染色体上有一个 pfk 基因(pfk2-PB1)。与甘露醇相比,在甲醇上生长的细胞中,质粒编码基因的转录水平提高了 10 到 15 倍,而在两种菌株中,两种条件下染色体基因的转录水平相似。在大肠杆菌中重组产生了所有七种基因产物,进行了纯化和生化特性分析。所有三种 RPE 均以六聚体形式发挥活性,被 Mg 和 Mn 催化激活,对核酮糖 5-磷酸的 K' 值(56-75μM)相似。与两种 Rpe1 蛋白相比,Rpe2-MGA3 的 V (49 U/mg)低 2 倍,热稳定性明显降低。Pfk1-PB1* 被证明是无功能的。PFK 以八聚体和四聚体形式发挥活性,被 Mg 和 Mn 催化激活,具有相似的热稳定性。PFK 对果糖 6-磷酸(0.61-0.94μM)和 ATP(0.38-0.82μM)的 K 值相似,而 Pfk1-MGA3 的 V (6.3 U/mg)比两种 Pfk2 蛋白低 2 倍。我们的结果表明,MGA3 和 PB1 对依赖质粒的甲基营养产生了替代解决方案,包括 RuMP 循环酶的遗传组织、调控和生物化学。

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