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Disruption of β-oxidation pathway in Pseudomonas putida KT2442 to produce new functionalized PHAs with thioester groups

机译:破坏恶臭假单胞菌KT2442中的β-氧化途径以产生具有硫酯基团的新功能化PHAs

摘要

This work describes the generation of novel PHAs (named PHACOS) with a new monomer composition containing thioester groups in the side chain, which confers new properties and made them suitable for chemical modifications after their biosynthesis. We have analyzed the PHACOS production abilities of the wild-type strain Pseudomonas putida KT2442 vs. its derived strain P. putida KT42FadB, mutated in the fadB gene from the central metabolic β-oxidation pathway involved in the synthesis of medium-chain-length PHA (mcl-PHA). Different fermentation strategies based on one- or two-stage cultures have been tested resulting in PHACOS with different monomer composition. Using decanoic acid as inducer of the growth and polymer synthesis and 6-acetylthiohexanoic acid as PHA precursor in a two-stage strategy, the maximum yield was obtained by culturing the strain KT42FadB. Nuclear magnetic resonance and gas chromatography coupled to mass spectrometry showed that polymers obtained from the wild-type and KT42FadB strains, included 6-acetylthio-3-hydroxyhexanoic acid (OH-6ATH) and the shorter derivative 4-acetylthio-3-hydroxybutanoic acid (OH-4ATB) in their composition, although in different ratios. While the polymer obtained from KT42FadB strain contained mainly OH-6ATH monomer units, mcl-PHA produced by the wild-type strain contained OH-6ATH and OH-4ATB. Furthermore, polyesters showed differences in the OH-alkyl derivates moiety. The strain KT42FadB overproduced PHACOS when compared to the production rate of the control strain in one- and two-stage cultures. Thermal properties obtained by differential scanning calorimetry indicated that both polymers have different glass transition temperatures related to their composition.
机译:这项工作描述了具有在侧链中包含硫酯基团的新单体组成的新型PHA(称为PHACOS)的产生,赋予了新的性能并使它们适合于生物合成后的化学修饰。我们已经分析了野生型恶臭假单胞菌KT2442与衍生菌株恶臭假单胞菌KT42FadB的PHACOS生产能力,这些菌株在涉及中链长度PHA合成的中央代谢β-氧化途径的fadB基因中发生了突变。 (mcl-PHA)。已经测试了基于一阶段或两阶段培养的不同发酵策略,从而产生了具有不同单体组成的PHACOS。以癸酸为生长和聚合物合成的诱导剂,并以6-乙酰基硫代己酸为两步策略,作为PHA前体,通过培养菌株KT42FadB获得了最大产量。核磁共振和气相色谱-质谱联用显示,从野生型和KT42FadB菌株获得的聚合物包括6-乙酰硫基-3-羟基己酸(OH-6ATH)和较短的衍生物4-乙酰硫基-3-羟基丁酸( OH-4ATB),但比例不同。从KT42FadB菌株获得的聚合物主要包含OH-6ATH单体单元,而由野生型菌株产生的mcl-PHA包含OH-6ATH和OH-4ATB。此外,聚酯在OH-烷基衍生物部分中显示出差异。与一阶段和两阶段培养的对照菌株的生产率相比,菌株KT42FadB过量生产了PHACOS。通过差示扫描量热法获得的热性能表明,两种聚合物具有与其组成有关的不同的玻璃化转变温度。

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