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Production of highly bioactive resveratrol analogues pterostilbene and piceatannol in metabolically engineered grapevine cell cultures

机译:在代谢工程化葡萄细胞培养物中生产高生物活性白藜芦醇类似物活体和PICEATANNOL

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摘要

Grapevine stilbenes, particularly trans-resveratrol, have a demonstrated pharmacological activity. Other natural stilbenes derived from resveratrol such as pterostilbene or piceatannol, display higher oral bioavailability and bioactivity than the parent compound, but are far less abundant in natural sources. Thus, to efficiently obtain these bioactive resveratrol derivatives, there is a need to develop new bioproduction systems. Grapevine cell cultures are able to produce large amounts of easily recoverable extracellular resveratrol when elicited with methylated cyclodextrins and methyl jasmonate. We devised this system as an interesting starting point of a metabolic engineering-based strategy to produce resveratrol derivatives using resveratrol-converting enzymes. Constitutive expression of either Vitis vinifera resveratrol O-methyltransferase (VvROMT) or human cytochrome P450 hydroxylase 1B1 (HsCYP1B1) led to pterostilbene or piceatannol, respectively, after the engineered cell cultures were treated with the aforementioned elicitors. Functionality of both gene products was first assessed in planta by Nicotiana benthamiana agroinfiltration assays, in which tobacco cells transiently expressed stilbene synthase and VvROMT or HsCYP1B1. Grapevine cell cultures transformed with VvROMT produced pterostilbene, which was detected in both intra-and extracellular compartments, at a level of micrograms per litre. Grapevine cell cultures transformed with HsCYP1B1 produced about 20 mg/L culture of piceatannol, displaying a sevenfold increase in relation to wild-type cultures, and reaching an extracellular distribution of up to 45% of total production. The results obtained demonstrate the feasibility of this novel system for the bioproduction of natural and more bioactive resveratrol derivatives and suggest new ways for the improvement of production yields.
机译:Grapevine Stilbenes,特别是Trans-Ferveratrol,具有证明的药理学活性。来自白藜芦醇的其他自然斯蒂芬,如活体苯丙烯或皮皮索,显示比母体化合物更高的口服生物利用度和生物活性,但在天然来源中的浓度远小得多。因此,为了有效地获得这些生物活性白藜芦醇衍生物,需要开发新的生物制造系统。葡萄细胞培养物能够在用甲基化环糊精和茉鲸甲酸甲醇引发时产生大量易于可回收的细胞外白藜芦醇。我们将该系统设计为基于代谢工程的策略的有趣起点,以产生使用白藜芦醇转换酶的白藜芦醇衍生物。在用上述Elicitors处理工程化细胞培养物之后,分别分别将血管血管白藜芦醇O-甲基转移α(VVROMT)或人细胞色谱酶(VVROMT)或人细胞色素P450羟化酶1B1(HSCOP1B1)的表达分别导致活体蛋白或PEIETANNOL。通过Nicotiana Benthamiana农鸡嗜血酵母测定,在Planta中首次评估两种基因产物的功能,其中烟草细胞瞬时表达芪合成酶和VVROMT或HSC71B1。用VVROMT产生的pterostilbene转化的葡萄细胞培养物,其在每升微克水平和细胞外隔室中检测到。用HSCYP1B1转化的葡萄细胞培养物产生约20mg / L的Piceatannol培养,显示与野生型培养有关的七倍,并达到全部生产的细胞外分布,占总生产的45%。所获得的结果表明,这种新型系统为自然和更多的生物活性白藜芦醇衍生物生物生产的可行性,并提出了提高产量的新方法。

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