Liu Xiaofeng, Xia Yongjun, Zhang Yao, Yang Caiyun, Xiong Zhiqiang, Song Xin, Ai Lianzhong
Shanghai Engineering Research Center of Food Microbiology, School of Medical Instrument and Food Engineering, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai, 200093, People's Republic of China.
AMB Express. 2020 Aug 3;10(1):136. doi: 10.1186/s13568-020-01076-6.
Antroquinonol (AQ) has several remarkable bioactivities in acute myeloid leukaemia and pancreatic cancer, but difficulties in the mass production of AQ hamper its applications. Currently, molecular biotechnology methods, such as gene overexpression, have been widely used to increase the production of metabolites. However, AQ biosynthetic genes and enzymes are poorly understood. In this study, an integrated study coupling RNA-Seq and isobaric tags for relative and absolute quantitation (iTRAQ) were used to identify AQ synthesis-related genes and enzymes in Antrodia camphorata during coenzyme Q-induced fermentation (FM). The upregulated genes related to acetyl-CoA synthesis indicated that acetyl-CoA enters the mevalonate pathway to form the farnesyl tail precursor of AQ. The metE gene for an enzyme with methyl transfer activity provided sufficient methyl groups for AQ structure formation. The CoQ2 and ubiA genes encode p-hydroxybenzoate polyprenyl transferase, linking coenzyme Q and the polyisoprene side chain to form coenzyme Q. NADH is transformed into NAD+ and releases two electrons, which may be beneficial for the conversion of coenzyme Q to AQ. Understanding the biosynthetic genes and enzymes of AQ is important for improving its production by genetic means in the future.
安曲quinonol(AQ)在急性髓系白血病和胰腺癌中具有多种显著的生物活性,但AQ大规模生产的困难阻碍了其应用。目前,分子生物技术方法,如基因过表达,已被广泛用于提高代谢产物的产量。然而,AQ生物合成基因和酶的了解却很少。在本研究中,采用RNA测序和相对与绝对定量等压标签(iTRAQ)相结合的综合研究方法,来鉴定樟芝在辅酶Q诱导发酵(FM)过程中与AQ合成相关的基因和酶。与乙酰辅酶A合成相关的上调基因表明,乙酰辅酶A进入甲羟戊酸途径,形成AQ的法尼基尾前体。具有甲基转移活性的酶的metE基因可为AQ结构形成提供足够的甲基基团。CoQ2和ubiA基因编码对羟基苯甲酸聚异戊二烯转移酶,将辅酶Q与聚异戊二烯侧链连接形成辅酶Q。NADH转化为NAD+并释放两个电子,这可能有利于辅酶Q向AQ的转化。了解AQ的生物合成基因和酶对于未来通过基因手段提高其产量具有重要意义。