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一种来自褐腐真菌的新型酚酸脱羧酶可将生物来源的芥子酸天然脱羧生成具有生物活性的酚类化合物油菜酚。

A New Phenolic Acid Decarboxylase from the Brown-Rot Fungus Natively Decarboxylates Biosourced Sinapic Acid into Canolol, a Bioactive Phenolic Compound.

作者信息

Odinot Elise, Bisotto-Mignot Alexandra, Frezouls Toinou, Bissaro Bastien, Navarro David, Record Eric, Cadoret Frédéric, Doan Annick, Chevret Didier, Fine Frédéric, Lomascolo Anne

机构信息

OléoInnov, 19 Rue du Musée, F-13001 Marseille, France.

INRAE, Aix-Marseille Université, UMR1163 BBF Fungal Biodiversity and Biotechnology, 163 Avenue de Luminy, F-13009 Marseille, France.

出版信息

Bioengineering (Basel). 2024 Feb 14;11(2):181. doi: 10.3390/bioengineering11020181.

Abstract

Rapeseed meal (RSM) is a cheap, abundant and renewable feedstock, whose biorefinery is a current challenge for the sustainability of the oilseed sector. RSM is rich in sinapic acid (SA), a -hydroxycinnamic acid that can be decarboxylated into canolol (2,6-dimethoxy-4-vinylphenol), a valuable bioactive compound. Microbial phenolic acid decarboxylases (PADs), mainly described for the non-oxidative decarboxylation of ferulic and -coumaric acids, remain very poorly documented to date, for SA decarboxylation. The species has previously been shown to biotransform SA into canolol in vivo, but the enzyme responsible for bioconversion of the acid has never been characterized. In this study, we purified and characterized a new PAD from the canolol-overproducing strain BRFM15. Proteomic analysis highlighted a sole PAD-type protein sequence in the intracellular proteome of the strain. The native enzyme (PAD) displayed an unusual outstanding activity for decarboxylating SA (V of 600 U.mg, k of 6.3 s and k/K of 1.6 s.mM). We showed that PAD (a homodimer of 2 × 22 kDa) is fully active in a pH range of 5.5-7.5 and a temperature range of 30-55 °C, with optima of pH 6-6.5 and 37-45 °C, and is highly stable at 4 °C and pH 6-8. Relative ratios of specific activities on ferulic, sinapic, -coumaric and caffeic acids, respectively, were 100:24.9:13.4:3.9. The enzyme demonstrated in vitro effectiveness as a biocatalyst for the synthesis of canolol in aqueous medium from commercial SA, with a molar yield of 92%. Then, we developed processes to biotransform naturally-occurring SA from RSM into canolol by combining the complementary potentialities of an feruloyl esterase type-A, which is able to release free SA from the raw meal by hydrolyzing its conjugated forms, and PAD, in aqueous medium and mild conditions. PAD decarboxylation of biobased SA led to an overall yield of 1.6-3.8 mg canolol per gram of initial meal. Besides being the first characterization of a fungal PAD able to decarboxylate SA, this report shows that PAD is very promising as new biotechnological tool to generate biobased vinylphenols of industrial interest (especially canolol) as valuable platform chemicals for health, nutrition, cosmetics and green chemistry.

摘要

菜籽粕(RSM)是一种廉价、丰富且可再生的原料,其生物炼制是当前油籽行业可持续发展面临的一项挑战。菜籽粕富含芥子酸(SA),一种α-羟基肉桂酸,它可以脱羧生成油菜酚(2,6-二甲氧基-4-乙烯基苯酚),这是一种有价值的生物活性化合物。微生物酚酸脱羧酶(PADs)主要用于阿魏酸和对香豆酸的非氧化脱羧反应,迄今为止,关于SA脱羧反应的报道仍然非常少。此前已证明该物种能在体内将SA生物转化为油菜酚,但负责该酸生物转化的酶从未被鉴定过。在本研究中,我们从高产油菜酚的菌株BRFM15中纯化并鉴定了一种新的PAD。蛋白质组学分析突出了该菌株细胞内蛋白质组中唯一的PAD型蛋白质序列。天然酶(PAD)在脱羧SA方面表现出异常出色的活性(V为600 U.mg,k为6.3 s,k/K为1.6 s.mM)。我们发现PAD(一种2×22 kDa的同型二聚体)在pH范围5.5 - 7.5和温度范围30 - 55°C内具有完全活性,最适pH为6 - 6.5,最适温度为37 - 45°C,并且在4°C和pH 6 - 8时高度稳定。其对阿魏酸、芥子酸、对香豆酸和咖啡酸的比活性相对比值分别为100:24.9:13.4:3.9。该酶在体外作为生物催化剂,能在水介质中由商业SA合成油菜酚,摩尔产率为92%。然后,我们开发了一些工艺,通过结合A型阿魏酸酯酶和PAD的互补潜力,在水介质和温和条件下将菜籽粕中天然存在的SA生物转化为油菜酚。A型阿魏酸酯酶能够通过水解其共轭形式从原料粕中释放出游离的SA。基于生物基SA的PAD脱羧反应每克初始粕可产生1.6 - 3.8毫克油菜酚的总产率。除了首次鉴定出一种能够使SA脱羧的真菌PAD外,本报告还表明,PAD作为一种新的生物技术工具非常有前景,可用于生成具有工业价值的生物基乙烯基苯酚(特别是油菜酚),作为健康、营养、化妆品和绿色化学领域有价值的平台化学品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97e4/10886158/911432bf5066/bioengineering-11-00181-g001.jpg

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