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多酰基辅酶 A 氧化酶在解脂耶氏酵母中碳流向β-氧化和聚羟基烷酸生物合成的路由中的作用。

Roles of multiple acyl-CoA oxidases in the routing of carbon flow towards β-oxidation and polyhydroxyalkanoate biosynthesis in Yarrowia lipolytica.

机构信息

INRA, UMR1319 Micalis, Domaine de Vilvert, Jouy-en-Josas, France.

出版信息

FEMS Yeast Res. 2010 Nov;10(7):917-27. doi: 10.1111/j.1567-1364.2010.00670.x. Epub 2010 Aug 18.

Abstract

The oleaginous yeast Yarrowia lipolytica possesses six acyl-CoA oxidase (Aox) isoenzymes encoded by genes POX1-POX6. The respective roles of these multiple Aox isoenzymes were studied in recombinant Y. lipolytica strains that express heterologous polyhydroxyalkanoate (PHA) synthase (phaC) of Pseudomonas aeruginosa in varying POX genetic backgrounds, thus allowing assessment of the impact of specific Aox enzymes on the routing of carbon flow to β-oxidation or to PHA biosynthesis. Analysis of PHA production yields during growth on fatty acids with different chain lengths has revealed that the POX genotype significantly affects the PHA levels, but not the monomer composition of PHA. Aox3p function was found to be responsible for 90% and 75% of the total PHA produced from either C9:0 or C13:0 fatty acid, respectively, whereas Aox5p encodes the main Aox involved in the biosynthesis of 70% of PHA from C9:0 fatty acid. Other Aoxs, such as Aox1p, Aox2p, Aox4p and Aox6p, were not found to play a significant role in PHA biosynthesis, independent of the chain length of the fatty acid used. Finally, three known models of β-oxidation are discussed and it is shown that a 'leaky-hose pipe model' of the cycle can be applied to Y. lipolytica.

摘要

油脂酵母解脂耶氏酵母拥有六个酰基辅酶 A 氧化酶 (Aox) 同工酶,由 POX1-POX6 基因编码。在表达不同 POX 遗传背景的异源聚羟基脂肪酸酯 (PHA) 合酶 (phaC)的重组解脂耶氏酵母菌株中,研究了这些多种 Aox 同工酶的各自作用,从而可以评估特定 Aox 酶对碳流向β-氧化或向 PHA 生物合成的路由的影响。在不同链长的脂肪酸上生长时分析 PHA 产量,结果表明 POX 基因型显著影响 PHA 水平,但不影响 PHA 的单体组成。发现 Aox3p 功能分别负责 90%和 75%的来自 C9:0 或 C13:0 脂肪酸的总 PHA 的产生,而 Aox5p 编码主要参与 70%来自 C9:0 脂肪酸的 PHA 生物合成的 Aox。其他 Aox,如 Aox1p、Aox2p、Aox4p 和 Aox6p,被发现与脂肪酸的链长无关,在 PHA 生物合成中不起重要作用。最后,讨论了三种已知的β-氧化模型,并表明该循环的“漏管模型”可应用于解脂耶氏酵母。

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