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通过代谢工程在[具体对象未提及]中高效生产无色类胡萝卜素八氢番茄红素。

Efficient Production of the Colorless Carotenoid Phytoene in through Metabolic Engineering.

作者信息

Park Kwanghyun, Kim Gyeongmin, Cha Seungwoo, Ham Yangsub, Hahn Ji-Sook

机构信息

School of Chemical and Biological Engineering, Institute of Chemical Processes, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.

出版信息

J Agric Food Chem. 2024 Dec 4;72(48):26786-26795. doi: 10.1021/acs.jafc.4c07735. Epub 2024 Nov 19.

Abstract

Phytoene, a colorless carotenoid with unique ultraviolet (UV)-B absorption properties, offers potential for applications in functional food, cosmetics, and therapeutics. However, their low natural yield poses a challenge for large-scale production. This study aims to enhance phytoene production in the oleaginous yeast by introducing a heterologous phytoene synthase gene combined with metabolic engineering approaches. We enhanced phytoene synthesis by overexpressing key genes in the mevalonate pathway and compartmentalizing the biosynthetic pathway within peroxisomes. Moreover, we inhibited the glyoxylate cycle to increase the accumulation of peroxisomal acetyl-CoA available for phytoene production. Our engineered strains demonstrated a significant increase in phytoene production, reaching up to 1.34 g/L titer and 58.74 mg/gDCW yield in the flask-scale fed-batch culture, which are the highest levels reported to date. These results underscore the potential of as a robust platform for producing phytoenes and other terpenoids on an industrial scale, offering valuable insights for future efforts in metabolic engineering.

摘要

八氢番茄红素是一种具有独特紫外线B(UV-B)吸收特性的无色类胡萝卜素,在功能性食品、化妆品和治疗领域具有应用潜力。然而,其天然产量低给大规模生产带来了挑战。本研究旨在通过引入异源八氢番茄红素合酶基因并结合代谢工程方法,提高产油酵母中八氢番茄红素的产量。我们通过过表达甲羟戊酸途径中的关键基因并将生物合成途径分隔在过氧化物酶体中来增强八氢番茄红素的合成。此外,我们抑制乙醛酸循环以增加可用于八氢番茄红素生产的过氧化物酶体乙酰辅酶A的积累。我们构建的工程菌株在摇瓶补料分批培养中八氢番茄红素产量显著增加,达到了1.34 g/L的滴度和58.74 mg/gDCW的产量,这是迄今为止报道的最高水平。这些结果强调了作为在工业规模上生产八氢番茄红素和其他萜类化合物的强大平台的潜力,为未来代谢工程的努力提供了有价值的见解。

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