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不同β-酮硫解酶基因对食酸戴尔福特菌H16衍生物中聚(3-羟基丁酸-co-3-羟基己酸)产量的影响。

Impact of various β-ketothiolase genes on PHBHHx production in Cupriavidus necator H16 derivatives.

作者信息

Arikawa Hisashi, Sato Shunsuke

机构信息

Green Planet Research Group, Agri-Bio & Supplement Research Laboratories, KANEKA CORPORATION, 1-8 Miyamae-Cho, Takasago-Cho, Takasago, Hyogo, 676-8688, Japan.

出版信息

Appl Microbiol Biotechnol. 2022 Apr;106(8):3021-3032. doi: 10.1007/s00253-022-11928-9. Epub 2022 Apr 22.

Abstract

Poly[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyhexanoate] (PHBHHx) is a type of biopolyester of the polyhydroxyalkanoate group (PHA). Due to a wide range of properties resulting from the alteration of the (R)-3-hydroxyhexanoate (3HHx) composition, PHBHHx is getting a lot of attention as a substitute to conventional plastic materials for various applications. Cupriavidus necator H16 is the most promising PHA producer and has been genetically engineered to produce PHBHHx efficiently for many years. Nevertheless, the role of individual genes involved in PHBHHx biosynthesis is not well elaborated. C. necator H16 possesses six potential physiologically active β-ketothiolase genes identified by transcriptome analysis, i.e., phaA, bktB, bktC (h16_A0170), h16_A0462, h16_A1528, and h16_B0759. In this study, we focused on the functionality of these genes in vivo in relation to 3HHx monomer supply. Gene deletion experiments identified BktB and H16_A1528 as important β-ketothiolases for C6 metabolism in β-oxidation. Furthermore, in the bktB/h16_A1528 double-deletion strain, the proportion of 3HHx composition of PHBHHx produced from sugar was very low, whereas that from plant oil was significantly higher. In fact, the proportion reached 36.2 mol% with overexpression of (R)-specifc enoyl-CoA hydratase (PhaJ) and PHA synthase. Furthermore, we demonstrated high-density production (196 g/L) of PHBHHx with high 3HHx (32.5 mol%) by fed-batch fermentation with palm kernel oil. The PHBHHx was amorphous according to the differential scanning calorimetry analysis. KEY POINTS: • Role of six β-ketothiolases in PHBHHx biosynthesis was investigated in vivo. • Double-deletion of bktB/h16_A1528 results in high 3HHx composition with plant oil. • Amorphous PHBHHx with 32.5 mol% 3HHx was produced in high density by jar fermenter.

摘要

(R)-3-羟基丁酸酯-co-(R)-3-羟基己酸酯是聚羟基链烷酸酯(PHA)类的一种生物聚酯。由于(R)-3-羟基己酸酯(3HHx)组成的改变导致其具有广泛的性能,PHBHHx作为传统塑料材料在各种应用中的替代品而备受关注。食酸丛毛单胞菌H16是最有前景的PHA生产者,多年来一直通过基因工程改造以高效生产PHBHHx。然而,参与PHBHHx生物合成的各个基因的作用尚未得到充分阐明。食酸丛毛单胞菌H16拥有通过转录组分析鉴定出的6个潜在的生理活性β-酮硫解酶基因,即phaA、bktB、bktC(h16_A0170)、h16_A0462、h16_A1528和h16_B0759。在本研究中,我们重点研究了这些基因在体内与3HHx单体供应相关的功能。基因缺失实验确定BktB和H16_A1528是β-氧化中C6代谢的重要β-酮硫解酶。此外,在bktB/h16_A1528双缺失菌株中,由糖产生的PHBHHx的3HHx组成比例非常低,而由植物油产生的比例则显著更高。事实上,在(R)-特异性烯酰辅酶A水合酶(PhaJ)和PHA合酶过表达的情况下,该比例达到了36.2 mol%。此外,我们通过用棕榈仁油进行补料分批发酵,证明了可以高密度生产3HHx含量高(32.5 mol%)的PHBHHx(196 g/L)。根据差示扫描量热法分析,该PHBHHx为无定形。要点:• 在体内研究了6种β-酮硫解酶在PHBHHx生物合成中的作用。• bktB/h16_A1528双缺失导致植物油中3HHx组成比例高。• 通过罐式发酵器以高密度生产了3HHx含量为32.5 mol%的无定形PHBHHx。

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