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The P450-4 Gene of Gibberella fujikuroi Encodes ent-Kaurene Oxidase in the Gibberellin Biosynthesis Pathway

机译:富士赤霉菌的P450-4基因编码赤霉菌素生物合成途径中的ent-Kaurene氧化酶

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摘要

At least five genes of the gibberellin (GA) biosynthesis pathway are clustered on chromosome 4 of Gibberella fujikuroi; these genes encode the bifunctional ent-copalyl diphosphate synthase/ent-kaurene synthase, a GA-specific geranylgeranyl diphosphate synthase, and three cytochrome P450 monooxygenases. We now describe a fourth cytochrome P450 monooxygenase gene (P450-4). Gas chromatography-mass spectrometry analysis of extracts of mycelia and culture fluid of a P450-4 knockout mutant identified ent-kaurene as the only intermediate of the GA pathway. Incubations with radiolabeled precursors showed that the metabolism of ent-kaurene, ent-kaurenol, and ent-kaurenal was blocked in the transformants, whereas ent-kaurenoic acid was metabolized efficiently to GA4. The GA-deficient mutant strain SG139, which lacks the 30-kb GA biosynthesis gene cluster, converted ent-kaurene to ent-kaurenoic acid after transformation with P450-4. The B1-41a mutant, described as blocked between ent-kaurenal and ent-kaurenoic acid, was fully complemented by P450-4. There is a single nucleotide difference between the sequence of the B1-41a and wild-type P450-4 alleles at the 3′ consensus sequence of intron 2 in the mutant, resulting in reduced levels of active protein due to a splicing defect in the mutant. These data suggest that P450-4 encodes a multifunctional ent-kaurene oxidase catalyzing all three oxidation steps between ent-kaurene and ent-kaurenoic acid.
机译:赤霉素(GA)生物合成途径的至少五个基因聚集在富士赤霉菌的4号染色体上。这些基因编码双功能对-戊基二磷酸合酶/对-月桂烯合酶,GA特异性香叶基香叶基二磷酸合酶和三种细胞色素P450单加氧酶。现在,我们描述第四种细胞色素P450单加氧酶基因(P450-4)。气相色谱-质谱分析P450-4敲除突变体的菌丝体和培养液,鉴定出ent-kaurene是GA途径的唯一中间体。用放射性标记的前体进行培养表明,在转化子中ENT-天竺葵烯,ENT-天竺葵酚和ENT-天竺葵的代谢被阻断,而ENT-天竺葵酸被有效地代谢为GA4。缺乏30-kb GA生物合成基因簇的GA缺陷型突变菌株SG139,在用P450-4转化后,将对戊烯转化为对戊烯酸。 B4501a突变体,被描述为在ent-kaurenal和ent-kaurenoic酸之间被封闭,由P450-4完全补充。在突变体的内含子2的3'共有序列的B1-41a和野生型P450-4等位基因之间存在一个核苷酸差异,由于突变体中的剪接缺陷导致活性蛋白水平降低。这些数据表明,P450-4编码一种多功能的ENT-贝壳杉烯氧化酶,催化在ENT-贝壳杉烯和ENT-贝壳杉烯酸之间的所有三个氧化步骤。

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