Substrate Flexibilities of Norbelladine Synthase and Noroxomaritidine/Norcraugsodine Reductase for Hydroxylated and/or Methoxylated Aldehydes

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL
Saw Yu Yu Hnin, Yu Nakashima, Hiroyuki Morita
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引用次数: 0

Abstract

Amaryllidaceae alkaloids are structurally diverse natural products with a wide range biological properties, and based on the partial identification of the biosynthetic enzymes, norbelladine would be a common intermediate in the biosynthetic pathways. Previous studies suggested that norbelladine synthase (NBS) catalyzed the condensation reaction of 3,4-dihydroxybenzaldehyde and tyramine to form norcraugsodine, and subsequently, noroxomaritidine/norcraugsodine reductase (NR) catalyzed the nicotinamide adenine dinucleotide phosphate (NADPH)-dependent reduction of norcraugsodine to generate norbelladine. However, recent studies have highlighted possible alternative Amaryllidaceae alkaloid biosynthetic pathways via the formation of isovanillin and vanillin from the 4-O- and 3-O-methylation reactions of 3,4-dihydroxybenzaldehyde, respectively. Herein, we focused on NpsNBS and NpsNR, which were initially identified from Narcissus pseudonarcissus, and explored their substrate recognition tolerance by performing condensation reactions of tyramine with various benzaldehyde derivatives, to shed light on the Amaryllidaceae alkaloid biosynthetic pathway from the viewpoint of the enzymatic properties. The assays revealed that both NpsNBS and NpsNR lacked the abilities to produce 4′-O- and 3′-O-methylnorbelladine from isovanillin and vanillin with tyramine, respectively. These observations thus suggested that Amaryllidaceae alkaloids are biosynthesized from norbelladine, formed through the condensation/reduction reaction of 3,4-dihydroxybenzaldehyde with tyramine.

Abstract Image Fullsize Image
Norbelladine 合成酶和 Noroxomaritidine/Norcraugsodine 还原酶对羟基化和/或甲氧基化醛的底物灵活性
金丝桃科生物碱是一种结构多样的天然产物,具有广泛的生物学特性,根据生物合成酶的部分鉴定,去甲金丝桃碱可能是生物合成途径中常见的中间产物。以往的研究认为,去甲斑蝥素合成酶(NBS)催化 3,4- 二羟基苯甲醛和酪胺的缩合反应生成去甲斑蝥素,随后去甲斑蝥素/去甲斑蝥素还原酶(NR)催化烟酰胺腺嘌呤二核苷酸磷酸酯(NADPH)还原去甲斑蝥素生成去甲斑蝥素。然而,最近的研究强调了通过 3,4-二羟基苯甲醛的 4-O-甲基化和 3-O-甲基化反应分别形成异香兰素和香兰素的可能的金盏花科生物碱替代生物合成途径。在此,我们以最初从水仙中鉴定出的 NpsNBS 和 NpsNR 为研究对象,通过酪胺与各种苯甲醛衍生物的缩合反应,探讨了它们对底物的识别能力,从而从酶学特性的角度揭示了天南星科生物碱的生物合成途径。实验结果表明,NpsNBS 和 NpsNR 都缺乏分别从异香兰素和香兰素与酪胺生成 4′-O-和 3′-O-甲基山金铃子碱的能力。这些观察结果表明,金盏花科生物碱是由3,4-二羟基苯甲醛与酪胺发生缩合/还原反应生成的去甲金铃子碱生物合成的。
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来源期刊
CiteScore
3.20
自引率
5.90%
发文量
132
审稿时长
1.7 months
期刊介绍: The CPB covers various chemical topics in the pharmaceutical and health sciences fields dealing with biologically active compounds, natural products, and medicines, while BPB deals with a wide range of biological topics in the pharmaceutical and health sciences fields including scientific research from basic to clinical studies. For details of their respective scopes, please refer to the submission topic categories below. Topics: Organic chemistry In silico science Inorganic chemistry Pharmacognosy Health statistics Forensic science Biochemistry Pharmacology Pharmaceutical care and science Medicinal chemistry Analytical chemistry Physical pharmacy Natural product chemistry Toxicology Environmental science Molecular and cellular biology Biopharmacy and pharmacokinetics Pharmaceutical education Chemical biology Physical chemistry Pharmaceutical engineering Epidemiology Hygiene Regulatory science Immunology and microbiology Clinical pharmacy Miscellaneous.
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