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Biosynthetic mechanism of very long chain polyunsaturated fatty acids in Thraustochytrium sp. 26185

机译:破囊壶菌属物种中长链多不饱和脂肪酸的生物合成机理。 26185

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摘要

Thraustochytrium, a unicellular marine protist, has been used as a commercial source of very long chain PUFAs (VLCPUFAs) such as DHA (22:6n-3). Our recent work indicates coexistence of a Δ4-desaturation-dependent pathway (aerobic) and a polyketide synthase-like PUFA synthase pathway (anaerobic) to synthesize the fatty acids in Thraustochytrium sp. 26185. Heterologous expression of the Thraustochytrium PUFA synthase along with a phosphopantetheinyl transferase in Escherichia coli showed the anaerobic pathway was highly active in the biosynthesis of VLCPUFAs. The amount of Δ4 desaturated VLCPUFAs produced reached about 18% of the total fatty acids in the transformant cells at day 6 in a time course of the induced expression. In Thraustochytrium, the expression level of the PUFA synthase gene was much higher than that of the Δ4 desaturase gene, and also highly correlated with the production of VLCPUFAs. On the other hand, Δ9 and Δ12 desaturations in the aerobic pathway were either ineffective or absent in the species, as evidenced by the genomic survey, heterologous expression of candidate genes, and in vivo feeding experiments. These results indicate that the anaerobic pathway is solely responsible for the biosynthesis for VLCPUFAs in Thraustochytrium.
机译:破囊壶菌是单细胞海洋生物,已被用作超长链PUFA(VLCPUFA)的商业来源,例如DHA(22:6n-3)。我们最近的工作表明,Δ4-去饱和依赖性途径(需氧)和聚酮化合物合酶样PUFA合酶途径(厌氧)可以并存,从而在Thraustochytrium sp中合成脂肪酸。 26185.破囊壶菌PUFA合酶与磷酸泛肽基转移酶在大肠杆菌中的异源表达表明,厌氧途径在VLCPUFAs的生物合成中具有很高的活性。在诱导表达的时间过程中,在第6天,产生的Δ4去饱和VLCPUFA的量达到转化细胞中总脂肪酸的约18%。在破囊壶菌中,PUFA合酶基因的表达水平比Δ4去饱和酶基因的表达水平高得多,并且与VLCPUFA的产生高度相关。另一方面,通过基因组研究,候选基因的异源表达和体内喂养实验证明,有氧途径中的Δ9和Δ12去饱和在该物种中无效或不存在。这些结果表明,厌氧途径是仅用于破囊壶菌中VLCPUFAs的生物合成。

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