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Molecular evidence that the rate-limiting step for the biosynthesis of arachidonic acid in Mortierella alpina is at the level of an elongase

机译:分子证据表明,高山被孢霉中花生四烯酸生物合成的限速步骤处于延长酶水平

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摘要

The oil-producing fungus Mortierella alpina 1S-4 is an industrial strain for arachidonic acid (AA) production. To determine its physiological properties and to clarify the biosynthetic pathways for PUFA, heterologous and homologous gene expression systems were established in this fungus. The first trial was performed with an enhanced green fluorescent protein gene to assess the transformation efficiency for heterologous gene expression. As a result, strong fluorescence was observed in the spores of the obtained transformant, suggesting that the foreign gene was inherited by the spores. The next trial was performed with a homologous PUFA elongase (GLELOp) gene, this enzyme having been reported to catalyze the elongation of GLA (18∶3n−6) to dihomo-γ-linolenic acid (20∶−6), and to be the rate-limiting step of AA production. The FA composition of the transformant was different from that of the host strain: The GLA content was decreased whereas that of AA was increased. These data support the hypothesis that the GLELOp enzyme plays an important role in PUFA synthesis, and may indicate how to control PUFA biosynthesis.
机译:产油真菌高山孢霉1S-4是用于生产花生四烯酸(AA)的工业菌株。为了确定其生理特性并阐明PUFA的生物合成途径,在该真菌中建立了异源和同源基因表达系统。第一次试验是用增强的绿色荧光蛋白基因进行的,以评估异源基因表达的转化效率。结果,在获得的转化体的孢子中观察到强荧光,表明外源基因被孢子遗传。下一个试验是用同源PUFA延长酶(GLELOp)基因进行的,据报道该酶催化GLA(18∶3n-6)延伸为二高-γ-亚麻酸(20∶-6)。 AA生产的限速步骤。转化体的FA组成与宿主菌株不同:GLA含量降低而AA含量升高。这些数据支持GLELOp酶在PUFA合成中起重要作用的假设,并且可能表明如何控制PUFA的生物合成。

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  • 来源
    《Lipids》 |2005年第1期|25-30|共6页
  • 作者单位

    Laboratory of Fermentation Physiology and Applied Microbiology Division of Applied Life Sciences Graduate School of Agriculture Kyoto University;

    Laboratory of Fermentation Physiology and Applied Microbiology Division of Applied Life Sciences Graduate School of Agriculture Kyoto University;

    Laboratory of Fermentation Physiology and Applied Microbiology Division of Applied Life Sciences Graduate School of Agriculture Kyoto University;

    Advanced Technology Suntory Ltd.;

    Health Care Science Suntory Ltd.;

    Advanced Technology Suntory Ltd.;

    Laboratory of Fermentation Physiology and Applied Microbiology Division of Applied Life Sciences Graduate School of Agriculture Kyoto University;

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