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Genomic organization and biochemistry of the ribulose monophosphate pathway and its application in biotechnology

机译:核糖一磷酸途径的基因组组织和生物化学及其在生物技术中的应用

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摘要

3-Hexulose-6-phosphate synthase (HPS) and 6-phospho-3-hexuloisomerase (PHI) are key enzymes catalyzing exergonic reactions of the formaldehyde-fixing reaction and the isomerization of sugar phosphate in the ribulose monophosphate (RuMP) pathway. This pathway, which was originally found in methylotrophic bacteria, is now recognized to be widespread in prokaryotes and has been shown to be involved not only in formaldehyde fixation and detoxification but also in pentose phosphate biosynthesis. In this review, we describe the genomic organization and regulation of the genes of the RuMP pathway and then discuss the physiological roles of this pathway in prokaryotes. We further describe the biochemical properties of HPS and PHI. Heterologous expression of HPS and PHI in various organisms allows them to metabolize and detoxify formaldehyde, and we also review recent progress in such applications in biotechnology.
机译:3-己糖-6-磷酸合酶(HPS)和6-磷酸-3-己糖异构酶(PHI)是催化甲醛固定反应和糖磷酸酯核糖单磷酸(RuMP)途径中异构化酶的能动反应的关键酶。该途径最初发现于甲基营养型细菌中,现已被认为在原核生物中广泛存在,并且已显示不仅与甲醛固定和解毒有关,而且与戊糖磷酸的生物合成有关。在这篇综述中,我们描述了RuMP途径的基因的基因组组织和调控,然后讨论了该途径在原核生物中的生理作用。我们进一步描述了HPS和PHI的生化特性。 HPS和PHI在各种生物中的异源表达使它们能够代谢和解毒甲醛,并且我们还回顾了生物技术中此类应用的最新进展。

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