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鬼臼亚甲二氧基愈创木脂脱氢酶的脱辅基形式及二元/三元复合物的晶体结构,该酶参与具有健康保护作用和植物防御作用的木脂素的形成。

Crystal structures of apo-form and binary/ternary complexes of Podophyllum secoisolariciresinol dehydrogenase, an enzyme involved in formation of health-protecting and plant defense lignans.

作者信息

Youn Buhyun, Moinuddin Syed G A, Davin Laurence B, Lewis Norman G, Kang Chulhee

机构信息

School of Molecular Biosciences, Washington State University, Pullman, Washington 99164-4660, USA.

出版信息

J Biol Chem. 2005 Apr 1;280(13):12917-26. doi: 10.1074/jbc.M413266200. Epub 2005 Jan 13.

Abstract

(-)-Matairesinol is a central biosynthetic intermediate to numerous 8-8'-lignans, including the antiviral agent podophyllotoxin in Podophyllum species and its semi-synthetic anticancer derivatives teniposide, etoposide, and Etopophos. It is formed by action of an enantiospecific secoisolariciresinol dehydrogenase, an NAD(H)-dependent oxidoreductase that catalyzes the conversion of (-)-secoisolariciresinol. Matairesinol is also a plant-derived precursor of the cancer-preventative "mammalian" lignan or "phytoestrogen" enterolactone, formed in the gut following ingestion of high fiber dietary foodstuffs, for example. Additionally, secoisolariciresinol dehydrogenase is involved in pathways to important plant defense molecules, such as plicatic acid in the western red cedar (Thuja plicata) heartwood. To understand the molecular and enantiospecific basis of Podophyllum secoisolariciresinol dehydrogenase, crystal structures of the apo-form and binary/ternary complexes were determined at 1.6, 2.8, and 2.0 angstrom resolution, respectively. The enzyme is a homotetramer, consisting of an alpha/beta single domain monomer containing seven parallel beta-strands flanked by eight alpha-helices on both sides. Its overall monomeric structure is similar to that of NAD(H)-dependent short-chain dehydrogenases/reductases, with a conserved Asp47 forming a hydrogen bond with both hydroxyl groups of the adenine ribose of NAD(H), and thus specificity toward NAD(H) instead of NADP(H). The highly conserved catalytic triad (Ser153, Tyr167, and Lys171) is adjacent to both NAD(+) and substrate molecules, where Tyr167 functions as a general base. Following analysis of high resolution structures of the apo-form and two complex forms, the molecular basis for both the enantio-specificity and the reaction mechanism of secoisolariciresinol dehydrogenase is discussed and compared with that of pinoresinol-lariciresinol reductase.

摘要

(-)-matairesinol是众多8-8'-木脂素的核心生物合成中间体,包括鬼臼属植物中的抗病毒剂鬼臼毒素及其半合成抗癌衍生物替尼泊苷、依托泊苷和表柔比星。它是由对映体特异性的开环异落叶松脂醇脱氢酶作用形成的,这是一种依赖NAD(H)的氧化还原酶,催化(-)-开环异落叶松脂醇的转化。Matairesinol也是癌症预防“哺乳动物”木脂素或“植物雌激素”肠内酯的植物来源前体,例如在摄入高纤维饮食后在肠道中形成。此外,开环异落叶松脂醇脱氢酶参与重要植物防御分子的合成途径,如西部红雪松(Thuja plicata)心材中的plicatic acid。为了了解鬼臼属开环异落叶松脂醇脱氢酶的分子和对映体特异性基础,分别以1.6、2.8和2.0埃的分辨率测定了脱辅基形式和二元/三元复合物的晶体结构。该酶是一种同四聚体,由一个α/β单结构域单体组成,该单体包含七个平行的β链,两侧各有八个α螺旋。其整体单体结构与依赖NAD(H)的短链脱氢酶/还原酶相似,保守的Asp47与NAD(H)腺嘌呤核糖的两个羟基形成氢键,因此对NAD(H)具有特异性而非NADP(H)。高度保守的催化三联体(Ser153、Tyr167和Lys171)与NAD(+)和底物分子相邻,其中Tyr167作为一般碱。在分析脱辅基形式和两种复合物形式的高分辨率结构后,讨论了开环异落叶松脂醇脱氢酶对映体特异性和反应机制的分子基础,并与松脂醇-落叶松脂醇还原酶进行了比较。

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