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工程化产油酿酒酵母转化株中糖异生和脂类生成的调控。

Modulation of gluconeogenesis and lipid production in an engineered oleaginous Saccharomyces cerevisiae transformant.

机构信息

Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki, 305-8566, Japan.

Universidad de Salamanca, Campus Miguel de Unamuno, E-3707, Salamanca, Spain.

出版信息

Appl Microbiol Biotechnol. 2016 Sep;100(18):8147-57. doi: 10.1007/s00253-016-7662-x. Epub 2016 Jun 16.

Abstract

We previously created an oleaginous Saccharomyces cerevisiae transformant as a dga1 mutant overexpressing Dga1p lacking 29 amino acids at the N-terminal (Dga1∆Np). Because we have already shown that dga1 disruption decreases the expression of ESA1, which encodes histone acetyltransferase, the present study was aimed at exploring how Esa1p was involved in lipid accumulation. We based our work on the previous observation that Esa1p acetylates and activates phosphoenolpyruvate carboxykinase (PEPCK) encoded by PCK1, a rate-limiting enzyme in gluconeogenesis, and subsequently evaluated the activation of Pck1p by yeast growth with non-fermentable carbon sources, thus dependent on gluconeogenesis. This assay revealed that the ∆dga1 mutant overexpressing Dga1∆Np had much lower growth in a glycerol-lactate (GL) medium than the wild-type strain overexpressing Dga1∆Np. Moreover, overexpression of Esa1p or Pck1p in mutants improved the growth, indicating that the ∆dga1 mutant overexpressing Dga1∆Np had lower activities of Pck1p and gluconeogenesis due to lower expression of ESA1. In vitro PEPCK assay showed the same trend in the culture of the ∆dga1 mutant overexpressing Dga1∆Np with 10 % glucose medium, indicating that Pck1p-mediated gluconeogenesis decreased in this oleaginous transformant under the lipid-accumulating conditions introduced by the glucose medium. The growth of the ∆dga1 mutant overexpressing Dga1∆Np in the GL medium was also improved by overexpression of acetyl-CoA synthetase, Acs1p or Acs2p, indicating that supply of acetyl-CoA was crucial for Pck1p acetylation by Esa1p. In addition, the ∆dga1 mutant without Dga1∆Np also showed better growth in the GL medium, indicating that decreased lipid accumulation was enhancing Pck1p-mediated gluconeogenesis. Finally, we found that overexpression of Ole1p, a fatty acid ∆9-desaturase, in the ∆dga1 mutant overexpressing Dga1∆Np improved its growth in the GL medium. Although the exact mechanisms leading to the effects of Ole1p were not clearly defined, changes of palmitoleic and oleic acid contents appeared to be critical. This observation was supported by experiments using exogenous palmitoleic and oleic acids or overexpression of elongases. Our findings provide new insights on lipid accumulation mechanisms and metabolic engineering approaches for lipid production.

摘要

我们之前创建了一个产油酿酒酵母转化体作为 dga1 突变体,过度表达缺乏 N 端 29 个氨基酸的 Dga1p(Dga1∆Np)。因为我们已经表明,dga1 缺失会降低编码组蛋白乙酰转移酶的 Esa1 的表达,所以本研究旨在探索 Esa1p 如何参与脂质积累。我们的工作基于以前的观察结果,即 Esa1p 乙酰化并激活磷酸烯醇丙酮酸羧激酶(PEPCK),该酶由编码 PCK1 的基因编码,是糖异生的限速酶,随后评估了酵母在非发酵碳源上生长时 Pck1p 的激活情况,因此依赖于糖异生。该测定表明,过度表达 Dga1∆Np 的 ∆dga1 突变体在甘油-乳酸(GL)培养基中的生长速度明显低于过度表达 Dga1∆Np 的野生型菌株。此外,在突变体中过度表达 Esa1p 或 Pck1p 可改善生长,表明由于 ESA1 表达降低,过度表达 Dga1∆Np 的 ∆dga1 突变体的 Pck1p 和糖异生活性较低。体外 PEPCK 测定也显示,在 10%葡萄糖培养基中培养的 ∆dga1 突变体过度表达 Dga1∆Np 时也呈现出相同的趋势,表明在葡萄糖培养基引入的脂质积累条件下,这种产油转化体中的 Pck1p 介导的糖异生减少。在 GL 培养基中,过度表达乙酰辅酶 A 合成酶 Acs1p 或 Acs2p 也可改善 ∆dga1 突变体过度表达 Dga1∆Np 的生长,表明乙酰辅酶 A 的供应对 Esa1p 对 Pck1p 的乙酰化至关重要。此外,没有 Dga1∆Np 的 ∆dga1 突变体在 GL 培养基中的生长也更好,表明脂质积累减少增强了 Pck1p 介导的糖异生。最后,我们发现,在过度表达 Dga1∆Np 的 ∆dga1 突变体中过度表达脂肪酸 ∆9 去饱和酶 Ole1p 可改善其在 GL 培养基中的生长。虽然导致 Ole1p 作用的确切机制尚不清楚,但棕榈油酸和油酸含量的变化似乎至关重要。这一观察结果得到了使用外源性棕榈油酸和油酸或过表达延伸酶的实验的支持。我们的研究结果为脂质积累机制和脂质生产的代谢工程方法提供了新的见解。

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