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Global changes in the proteome of Cupriavidus necator H16 during poly-(3-hydroxybutyrate) synthesis from various biodiesel by-product substrates

机译:从各种生物柴油副产物底物合成聚(3-羟基丁酸酯)过程中铜氰菊酯H16蛋白质组的全局变化

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摘要

Synthesis of poly-[3-hydroxybutyrate] (PHB) by Cupriavidus necator H16 in batch cultures was evaluated using three biodiesel-derived by-products as the sole carbon sources: waste glycerol (REG-80, refined to 80 % purity with negligible free fatty acids); glycerol bottom (REG-GB, with up to 65 % glycerol and 35 % free fatty acids), and free fatty acids (REG-FFA, with up to 75 % FFA and no glycerol). All the three substrates supported growth and PHB production by C. necator, with polymer accumulation ranging from 9 to 84 % cell dry weight (cdw), depending on the carbon source. To help understand these differences, proteomic analysis indicated that although C. necator H16 was able to accumulate PHB during growth on all three biodiesel by-products, no changes in the levels of PHB synthesis enzymes were observed. However, significant changes in the levels of expression were observed for two Phasin proteins involved with PHB accumulation, and for a number of gene products in the fatty acid β-oxidation pathway, the Glyoxylate Shunt, and the hydrogen (H2) synthesis pathways in C. necator cells cultured with different substrates. The glycerol transport protein (GlpF) was induced in REG-GB and REG-80 glycerol cultures only. Cupriavidus necator cells cultured with REG-GB and REG-FFA showed up-regulation of β-oxidation and Glyoxylate Shunt pathways proteins at 24 h pi, but H2 synthesis pathways enzymes were significantly down-regulated, compared with cells cultured with waste glycerol. Our data confirmed earlier observations of constitutive expression of PHB synthesis proteins, but further suggested that C. necator H16 cells growing on biodiesel-derived glycerol were under oxidative stress.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-016-0206-z) contains supplementary material, which is available to authorized users.
机译:使用三种生物柴油衍生的副产物作为唯一碳源,评估了Cupriavidus necator H16在分批培养物中合成的聚[3-羟基丁酸](PHB):废甘油(REG-80,精制至80%纯度而游离含量可忽略不计)脂肪酸);甘油底部(REG-GB,甘油含量最高为65%,游离脂肪酸含量为35%)和游离脂肪酸(REG-FFA,脂肪酸含量最高为75%,无甘油)。所有这三种底物均支持C. necator的生长和PHB的生产,聚合物的积聚范围为9至84%细胞干重(cdw),具体取决于碳源。为了帮助理解这些差异,蛋白质组学分析表明,尽管C. necator H16能够在所有三种生物柴油副产物的生长过程中积累PHB,但未观察到PHB合成酶水平的变化。但是,观察到与PHB积累有关的两种Phasin蛋白以及脂肪酸β-氧化途径,乙醛酸分流道和C中氢(H2)合成途径中的许多基因产物的表达水平发生了显着变化。用不同底物培养的.necator细胞。仅在REG-GB和REG-80甘油培养物中诱导了甘油转运蛋白(GlpF)。与废甘油培养的细胞相比,用REG-GB和REG-FFA培养的Cupriavidus necator细胞在pi 24小时显示出β-氧化和乙醛酸分流途径蛋白的上调,但H2合成途径的酶显着下调。我们的数据证实了早期观察到的PHB合成蛋白组成型表达的观察结果,但进一步表明在生物柴油衍生的甘油上生长的C.necator H16细胞处于氧化应激状态。电子补充材料本文的在线版本(doi:10.1186 / s13568-016- 0206-z)包含补充材料,授权用户可以使用。

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