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The P450–1 gene of Gibberella fujikuroi encodes a multifunctional enzyme in gibberellin biosynthesis

机译:赤霉菌的P450-1基因 fujikuroi编码一种多功能酶 赤霉素生物合成

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摘要

Recent studies have shown that the genes of the gibberellin (GA) biosynthesis pathway in the fungus Gibberella fujikuroi are organized in a cluster of at least seven genes. P450–1 is one of four cytochrome P450 monooxygenase genes in this cluster. Disruption of the P450–1 gene in the GA-producing wild-type strain IMI 58289 led to total loss of GA production. Analysis of the P450–1-disrupted mutants indicated that GA biosynthesis was blocked immediately after ent-kaurenoic acid. The function of the P450–1 gene product was investigated further by inserting the gene into mutants of G. fujikuroi that lack the entire GA gene cluster; the gene was highly expressed under GA production conditions in the absence of the other GA-biosynthesis genes. Cultures of transformants containing P450–1 converted ent-[14C]kaurenoic acid efficiently into [14C]GA14, indicating that P450–1 catalyzes four sequential steps in the GA-biosynthetic pathway: 7β-hydroxylation, contraction of ring B by oxidation at C-6, 3β-hydroxylation, and oxidation at C-7. The GA precursors ent-7α-hydroxy[14C]kaurenoic acid, [14C]GA12-aldehyde, and [14C]GA12 were also converted to [14C]GA14. In addition, there is an indication that P450–1 may also be involved in the formation of the kaurenolides and fujenoic acids, which are by-products of GA biosynthesis in G. fujikuroi. Thus, P450–1 displays remarkable multifunctionality and may be responsible for the formation of 12 products.
机译:最近的研究表明,真菌赤霉菌中的赤霉素(GA)生物合成途径的基因组织在至少七个基因的簇中。 P450-1是该簇中四个细胞色素P450单加氧酶基因之一。产生GA的野生型IMI 58289中P450-1基因的破坏导致GA的总损失。对P450-1破坏的突变体的分析表明,在戊二醛-戊二酸消灭后,GA生物合成被立即阻止。通过将P450-1基因产物插入缺乏整个GA基因簇的G. fujikuroi突变体中,进一步研究了P450-1基因产物的功能。在没有其他GA生物合成基因的情况下,该基因在GA生产条件下高度表达。含有P450-1的转化体的培养物将对-[14C]脲醛酸有效地转化为[14C] GA14,表明P450-1催化了GA生物合成途径中的四个连续步骤:7β-羟基化,B环在C氧化而收缩-6、3β-羟基化,并在C-7处氧化。将GA前体的7α-羟基[14C]脲醛酸,[14C] GA12-醛和[14C] GA12转化为[14C] GA14。此外,有迹象表明,P450-1也可能参与了金叶内酯和富叶酸的形成,它们是藤本黑衣菌GA生物合成的副产物。因此,P450-1显示出显着的多功能性,可能负责形成12种产品。

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