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Production of (R)-3-hydroxybutyric acid by Arxula adeninivorans

机译:Arxula adeninivorans生产(R)-3-羟基丁酸

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摘要

(R)-3-hydroxybutyric acid can be used in industrial and health applications. The synthesis pathway comprises two enzymes, β-ketothiolase and acetoacetyl-CoA reductase which convert cytoplasmic acetyl-CoA to (R)-3-hydroxybutyric acid [(R)-3-HB] which is released into the culture medium. In the present study we used the non-conventional yeast, Arxula adeninivorans, for the synthesis enantiopure (R)-3-HB. To establish optimal production, we investigated three different endogenous yeast thiolases (Akat1p, Akat2p, Akat4p) and three bacterial thiolases (atoBp, thlp, phaAp) in combination with an enantiospecific reductase (phaBp) from Cupriavidus necator H16 and endogenous yeast reductases (Atpk2p, Afox2p). We found that Arxula is able to release (R)-3-HB used an existing secretion system negating the need to engineer membrane transport. Overexpression of thl and phaB genes in organisms cultured in a shaking flask resulted in 4.84?g?L?1 (R)-3-HB, at a rate of 0.023?g?L?1?h?1 over 214?h. Fed-batch culturing with glucose as a carbon source did not improve the yield, but a similar level was reached with a shorter incubation period [3.78?g?L?1 of (R)-3-HB at 89?h] and the rate of production was doubled to 0.043?g?L?1?h?1 which is higher than any levels in yeast reported to date. The secreted (R)-3-HB was 99.9% pure. This is the first evidence of enantiopure (R)-3-HB synthesis using yeast as a production host and glucose as a carbon source.
机译:(R)-3-羟基丁酸可用于工业和健康应用。合成途径包含两种酶,β-酮硫醇酶和乙酰乙酰基-CoA还原酶,其将细胞质的乙酰基-CoA转化为释放到培养基中的(R)-3-羟基丁酸[(R)-3-HB]。在本研究中,我们将非常规酵母Arxula adeninivorans用于合成对映体(R)-3-HB。为了建立最佳产量,我们研究了三种不同的内源性酵母硫解酶(Akat1p,Akat2p,Akat4p)和三种细菌性硫解酶(atoBp,thlp,phaAp),结合了来自Cupriavidus necator H16的对映体还原酶(phaBp)和内源酵母还原酶(Atpk2p Afox2p)。我们发现,使用现有的分泌系统,Arxula能够释放(R)-3-HB,从而无需进行膜运输设计。在摇瓶中培养的生物中,thl和phaB基因的过表达导致4.84?g?L?1(R)-3-HB,在214?h内的变化率为0.023?g?L?1?h?1。以葡萄糖为碳源的分批补料培养不能提高产量,但是在较短的孵育时间[89.h时(R)-3-HB的3.78?g?L?1]达到了相似的水平。生产速度翻了一番,达到0.043?g?L?1?h?1,高于迄今为止报道的酵母水平。分泌的(R)-3-HB的纯度为99.9%。这是使用酵母作为生产宿主并使用葡萄糖作为碳源合成对映体(R)-3-HB的第一个证据。

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