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Vitamin B6 biosynthesis in higher plants

机译:高等植物中维生素B6的生物合成

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Vitamin B6 is an essential metabolite in all organisms. It can act as a coenzyme for numerous metabolic enzymes and has recently been shown to be a potent antioxiclant. Plants and microorganisms have a de novo biosynthetic pathway for vitamin B6, but animals must obtain it from dietary sources. In Escherichia coli, it is known that the vitamin is derived from deoxyxylulose 5-phosphate (an intermediate in the nonmevalonate pathway of isoprenoid biosynthesis) and 4-phosphohydroxy-L-threonine. It has been assumed that vitamin B6 is synthesized in the same way in plants, but this hypothesis has never been experimentally proven. Here, we show that, in plants, synthesis of the vitamin takes an entirely different route, which does not involve deoxyxylulose 5-phosphate but instead utilizes intermediates from the pentose phosphate pathway, i.e., ribose 5-phosphate or ribulose 5-phosphate, and from glycolysis, i.e., dihydroxyacetone phosphate or glyceraidehyde 3-phosphate. The revelation is based on the recent discovery that, in bacteria and fungi, a novel pathway is in place that involves two genes (PDX1 and PDX2), neither of which is homologous to any of those involved in the previously cloctrined E. coli pathway. We demonstrate that Arabidopsis thaliana has two functional homologs of PDX1 and a single homolog of PDX2. Furthermore, and contrary to what was inferred previously, we show that the pathway appears to be cytosolic and is not localized to the plastid. Last, we report that the single PDX2 homolog is essential for plant viability.
机译:维生素B6是所有生物中必不可少的代谢产物。它可以作为多种代谢酶的辅酶,最近被证明是一种有效的抗氧化剂。植物和微生物具有从头开始的维生素B6生物合成途径,但动物必须从饮食中获取维生素B6。在大肠杆菌中,已知维生素来源于脱氧木酮糖5-磷酸酯(类异戊二烯生物合成的非甲羟戊酸途径中的中间体)和4-磷酸羟基-L-苏氨酸。已经假定维生素B6在植物中以相同的方式合成,但是该假设从未得到实验证明。在这里,我们表明,在植物中,维生素的合成采用了完全不同的途径,该途径不涉及5-磷酸脱氧木酮糖,而是利用戊糖磷酸途径中的中间体,即核糖5-磷酸或核糖5-磷酸,以及由糖酵解产生,即磷酸二羟丙酮或3-磷酸甘油酯。该启示基于最近的发现,即在细菌和真菌中,存在一条涉及两个基因(PDX1和PDX2)的新颖途径,这两个基因均与先前克隆的大肠杆菌途径中的任何一个都不同源。我们证明拟南芥具有PDX1的两个功能同源物和PDX2的单个同源物。此外,与先前推断的相反,我们表明该途径似乎是胞质的,并不局限于质体。最后,我们报告说单个PDX2同源物对于植物生存能力至关重要。

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