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Increasing lipid production using an NADP + -dependent malic enzyme from Rhodococcus jostii

机译:使用来自红球菌的 NADP + 依赖性苹果酸酶增加脂质生成

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The occurrence of NADP(+)-dependent malic enzymes (NADP(+)-MEs) in several Rhodococcus strains was analysed. The NADP(+)-ME number in Rhodococcus genomes seemed to be a strain-dependent property. Total NADP(+)-ME activity increased by 1.8-and 2.6-fold in the oleaginous Rhodococcus jostii RHA1 and Rhodococcus opacus PD630 strains during cultivation under nitrogen-limiting conditions. Total NADP(+)-ME activity inhibition by sesamol resulted in a significant decrease of the cellular biomass and lipid production in oleaginous rhodococci. A non-redundant ME coded by the RHA1_RS44255 gene located in a megaplasmid (pRHL3) of R. jostii RHA1 was characterized and its heterologous expression in Escherichia coli resulted in a twofold increase in ME activity in an NADP(+)-dependent manner. The overexpression of RHA1_RS44255 in RHA1 and PD630 strains grown on glucose promoted an increase in total NADP(+)-ME activity and an up to 1.9-foldincrease in total fatty acid production without sacrificing cellular biomass. On the other hand, its expression in Rhodococcus fascians F7 grown on glycerol resulted in a 1.3-1.4-foldincrease in total fatty acid content. The results of this study confirmed the contribution of NADP(+)-MEs to TAG accumulation in oleaginous rhodococci and the utility of these enzymes as an alternative approach to increase bacterial oil production from different carbon sources.
机译:分析了几种红球菌菌株中NADP(+)依赖性苹果酸酶(NADP(+)-MEs)的发生。红球菌基因组中的NADP(+)-ME数似乎是一种菌株依赖性特性。在限氮条件下栽培期间,含油红球菌RHA1和混浊红球菌PD630菌株的总NADP(+)-ME活性分别提高了1.8倍和2.6倍。芝麻酚对NADP(+)-ME总活性的抑制导致含油红球菌细胞生物量和脂质产生显著降低。表征了位于 R. jostii RHA1 的巨质粒 (pRHL3) 中的 RHA1_RS44255 基因编码的非冗余 ME,其在大肠杆菌中的异源表达导致 ME 活性以 NADP(+) 依赖性方式增加两倍。在葡萄糖上生长的 RHA1 和 PD630 菌株中 RHA1_RS44255 的过表达促进了总 NADP(+)-ME 活性的增加和总脂肪酸产量增加 1.9 倍,而不牺牲细胞生物量。另一方面,它在甘油上生长的红球菌 F7 中的表达导致总脂肪酸含量增加 1.3-1.4 倍。本研究的结果证实了NADP(+)-MEs对含油红球菌中TAG积累的贡献,以及这些酶作为增加不同碳源细菌油产量的替代方法的效用。

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