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首页> 外文期刊>Planta: An International Journal of Plant Biology >Pinoresinol-lariciresinol reductases, key to the lignan synthesis in plants
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Pinoresinol-lariciresinol reductases, key to the lignan synthesis in plants

机译:Pinoresinol-Lariciresinol还原酶,植物中的Lignan合成的关键

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Main conclusionThis paper provides an overview on activity, stereospecificity, expression and regulation of pinoresinol-lariciresinol reductases in plants. These enzymes are shared by the pathways to all 8-8 lignans derived from pinoresinol.Pinoresinol-lariciresinol reductases (PLR) are enzymes involved in the lignan biosynthesis after the initial dimerization of two monolignols. They catalyze two successive reduction steps leading to the production of lariciresinol or secoisolariciresinol from pinoresinol. Two secoisolariciresinol enantiomers can be synthetized with different fates. Depending on the plant species, these enantiomers are either final products (e.g., in the flaxseed where it is stored after glycosylation) or are the starting point for the synthesis of a wide range of lignans, among which the aryltetralin type lignans are used to semisynthesize anticancer drugs such as Etoposide((R)). Thus, the regulation of the gene expression of PLRs as well as the possible specificities of these reductases for one reduction step or one enantiomer are key factors to fine-tune the lignan synthesis. Results published in the last decade have shed light on the presence of more than one PLR in each plant and revealed various modes of action. Nevertheless, there are not many results published on the PLRs and most of them were obtained in a limited range of species. Indeed, a number of them deal with wild and cultivated flax belonging to the genus Linum. Despite the occurrence of lignans in bryophytes, pteridophytes and monocots, data on PLRs in these taxa are still missing and indeed the whole diversity of PLRs is still unknown. This review summarizes the data, published mainly in the last decade, on the PLR gene expression, enzymatic activity and biological function.
机译:主要结论本文概述了植物中Pinoresinol-laricirsinol还原酶的活性,立体性,表达和调节。这些酶由途径分享到衍生自显毒素的所有8-8个木质素。葡萄球菌醇 - Laricirsinol还原酶(PLR)是在初始二聚化后涉及的酶在两种单醇的初始二聚体中涉及Lignan生物合成。它们催化了两次连续的减少步骤,导致来自Pinoreinol的Lariciresinol或Secoisolaricirsinol的生产。可以用不同的释放合成两种SecoIsolaricirarinol对映体。取决于植物物种,这些对映体是最终产品(例如,在亚麻籽中储存在糖基化后的亚麻籽)或是合成各种木质素的起点,其中芳基图型木质素用于半组织抗癌药物如etposide((r))。因此,对PLR的基因表达以及用于一种还原步骤或一个对映体的可还原剂的可能特异性的调节是微调人合成的关键因素。在过去十年中发表的结果在每株植物中存在多个PLR的存在,并揭示了各种行动模式。然而,没有在PLR上发表的许多结果,其中大部分是在有限的物种范围内获得的。事实上,他们许多人处理野生和植物属于Linum属的亚麻。尽管在苔藓植物,蕨类植物和单焦点中发生了木质素,但这些分类群中的PLR数据仍然缺少,并且实际上,PLR的整个多样性仍然未知。本综述总结了主要在过去十年发布的数据,以PLR基因表达,酶活性和生物学功能发表。

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