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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Production of pikromycin using branched chain amino acid catabolism in Streptomyces venezuelae ATCC 15439
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Production of pikromycin using branched chain amino acid catabolism in Streptomyces venezuelae ATCC 15439

机译:使用支链氨基酸分解代谢的Pikromycin在链霉菌乙烯基ATCC 15439中生产

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摘要

Branched chain amino acids (BCAA) are catabolized into various acyl-CoA compounds, which are key precursors used in polyketide productions. Because of that, BCAA catabolism needs fine tuning of flux balances for enhancing the production of polyketide antibiotics. To enhance BCAA catabolism for pikromycin production in Streptomyces venezuelae ATCC 15439, three key enzymes of BCAA catabolism, 3-ketoacyl acyl carrier protein synthase III, acyl-CoA dehydrogenase, and branched chain alpha-keto acid dehydrogenase (BCDH) were manipulated. BCDH overexpression in the wild type strain resulted in 1.3 fold increase in pikromycin production compared to that of WT, resulting in total 25 mg/L of pikromycin. To further increase pikromycin production, methylmalonyl-CoA mutase linked to succinyl-CoA production was overexpressed along with BCDH. Overexpression of the two enzymes resulted in the highest titer of total macrolide production of 43 mg/L, which was about 2.2 fold increase compared to that of the WT. However, it accumulated and produced dehydroxylated forms of pikromycin and methymycin, including their derivatives as well. It indicated that activities of pikC, P450 monooxygenase, newly became a bottleneck in pikromycin synthesis.
机译:支链链氨基酸(BCAA)分解成各种酰基-CoA化合物,其是聚酮化合物中使用的关键前体。因此,BCAA分解代谢需要精细调整助焊剂余额,以增强聚酮化抗生素的生产。为了增强BCAA分解代谢用于Pikromycin生产中的链霉素ATCC 15439,操纵BCAA分解代谢的三个关键酶,3-酮酰基酰基载体蛋白合酶III,酰基-COA脱氢酶和支链α-酮酸脱氢酶(BCDH)。与WT相比,野生型菌株中的BCDH过度表达导致Pikromycin生产增加1.3倍,导致总量为25mg / L的Pikromycin。为了进一步增加Pikromycin生产,与琥珀酰基-CoA产生连接的甲基甘油酰基-CoA异质与BCDH过表达。两种酶的过度表达导致总大环内酯产生的最高滴度为43mg / L,与WT相比增加了约2.2倍。然而,它累积并产生了脱羟基化形式的Pikromycin和甲霉素,也包括它们的衍生物。它表明,PIKC,P450单氧基酶的活动新是Pikromycin合成中的瓶颈。

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