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首页> 外文期刊>Frontiers in Microbiology >Tetrahydrobiopterin Plays a Functionally Significant Role in Lipogenesis in the Oleaginous Fungus Mortierella alpina
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Tetrahydrobiopterin Plays a Functionally Significant Role in Lipogenesis in the Oleaginous Fungus Mortierella alpina

机译:四氢虫肝素在植物真菌中的脂肪生成中起着功能性显着的作用<斜体>紫藤性药物

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Tetrahydrobiopterin (BH _(4)) is well-known as a cofactor of phenylalanine hydroxylase (PAH) and nitric oxide synthase (NOS), but its exact role in lipogenesis is unclear. In this study, the GTP cyclohydrolase I (GTPCH) gene was overexpressed to investigate the role of BH _(4) in lipogenesis in oleaginous fungus Mortierella alpina . Transcriptome data analysis reveal that GTPCH expression was upregulated when nitrogen was exhausted, resulting in lipid accumulation. Significant changes were also found in the fatty acid profile of M. alpina grown on medium that contained a GTPCH inhibitor relative to that of M. alpina grown on medium that lacked the inhibitor. GTPCH overexpression in M. alpina (the MA-GTPCH strain) led to a sevenfold increase in BH _(4) levels and enhanced cell fatty acid synthesis and poly-unsaturation. Increased levels of nicotinamide adenine dinucleotide phosphate (NADPH) and upregulated expression of NADPH-producing genes in response to enhanced BH _(4) levels were also observed, which indicate a novel aspect of the NADPH regulatory mechanism. Increased BH _(4) levels also enhanced phenylalanine hydroxylation and nitric oxide synthesis, and the addition of an NOS or a PAH inhibitor in the MA-GTPCH and control strain cultures decreased fatty acid accumulation, NADPH production, and the transcript levels of NADPH-producing genes. Our research suggests an important role of BH _(4) in lipogenesis and that the phenylalanine catabolism and arginine–nitric oxide pathways play an integrating role in translating the effects of BH _(4) on lipogenesis by regulating the cellular NADPH pool. Thus, our findings provide novel insights into the mechanisms of efficient lipid biosynthesis regulation in oleaginous microorganisms and lay a foundation for the genetic engineering of these organisms to optimize their dietary fat yield.
机译:四氢萘啶素(BH _(4))是众所述的苯丙氨酸羟化物(PAH)和一氧化氮合酶(NOS)的辅因子,但其在脂肪生成中的确切作用尚不清楚。在该研究中,GTP环反水解酶I(GTPCH)基因过表达以研究BH _(4)在胃膜真菌的脂肪生成中的作用。转录组数据分析显示,当氮气排出时,使GTPCH表达上调,导致脂质积累。在含有在缺乏抑制剂的培养基中含有GTPCH抑制剂的培养基中含有GTPCH抑制剂的培养基的脂肪酸曲线中也发现了显着的变化。 GTPCH在M.Alpina(MA-GTPCH菌株)中的过表达导致BH _(4)水平的七倍增加,增强细胞脂肪酸合成和多不饱和度。还观察到增加烟氨基酰胺腺嘌呤二核苷酸磷酸氨基氨基二核苷酸磷酸(NADPH)和上调响应于增强的BH _(4)水平的NADPH-生成基因的上调表达,这表明了NADPH调节机制的新方面。增加的BH _(4)水平也增强了苯丙氨酸羟基化和一氧化氮合成,并在MA-GTPCH和对照菌株培养物中加入NOS或PAH抑制剂降低了脂肪酸积累,NADPH生产和NADPH的转录水平产生基因。我们的研究表明,BH _(4)在脂肪生成中的重要作用,苯丙氨酸分解代谢和精氨酸 - 一氧化氮途径在通过调节细胞NADPH池来转化BH _(4)对脂肪生成的影响的积分作用。因此,我们的研究结果提供了新的熟悉脂质生物合成调控在枯萎微生物中的有效机制,并为这些生物的基因工程奠定了基础,以优化其膳食脂肪产率。

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