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苜蓿(紫花苜蓿)紫铆亭还原酶的分子克隆与表达,紫铆素生物合成中的倒数第二个酶

Molecular cloning and expression of alfalfa (Medicago sativa L.) vestitone reductase, the penultimate enzyme in medicarpin biosynthesis.

作者信息

Guo L, Paiva N L

机构信息

Plant Biology Division, Samuel Roberts Noble Foundation, Ardmore, Oklahoma 73402, USA.

出版信息

Arch Biochem Biophys. 1995 Jul 10;320(2):353-60. doi: 10.1016/0003-9861(95)90019-5.

Abstract

Medicarpin, the major phytoalexin in alfalfa, is synthesized by way of the isoflavonoid branch of phenylpropanoid metabolism. One of the final steps of medicarpin biosynthesis, from vestitone to 7,2'-dihydroxy-4'-methoxyisoflavanol, is catalyzed by vestitone reductase. A 1245-bp cDNA clone which encodes vestitone reductase was identified utilizing internal amino acid sequence of purified vestitone reductase. When expressed in Escherichia coli, the cloned enzyme exhibits strict substrate stereospecificity for (3R)-vestitone, as was observed for vestitone reductase purified from alfalfa. The calculated molecular weight of the protein (35,918) is similar to that of purified vestitone reductase from alfalfa (38 kDa by SDS-PAGE). The levels of vestitone reductase transcript (1.35 kb) greatly increase within 2 h of elicitor addition to alfalfa cell suspension cultures, preceding the rapid increases in vestitione reductase enzyme activity and medicarpin biosynthesis. In healthy alfalfa plants, the highest levels of transcripts were detected in roots and root nodules, consistent with the synthesis of medicarpin and its conjugate in these tissues. The cloning of the vestitone reductase gene provides a specific tool for the study and manipulation of pterocarpan biosynthesis in legumes.

摘要

苜蓿中的主要植保素苜蓿素是通过苯丙烷类代谢的异黄酮分支合成的。苜蓿素生物合成的最后步骤之一,即从紫铆因到7,2'-二羟基-4'-甲氧基异黄酮醇,由紫铆因还原酶催化。利用纯化的紫铆因还原酶的内部氨基酸序列鉴定出一个编码紫铆因还原酶的1245 bp cDNA克隆。当在大肠杆菌中表达时,克隆的酶对(3R)-紫铆因表现出严格的底物立体特异性,这与从苜蓿中纯化的紫铆因还原酶所观察到的情况一致。计算出的该蛋白质分子量(35,918)与从苜蓿中纯化的紫铆因还原酶的分子量(SDS-PAGE法测定为38 kDa)相似。在向苜蓿细胞悬浮培养物中添加诱导子后的2小时内,紫铆因还原酶转录本(1.35 kb)的水平大幅增加,早于紫铆因还原酶活性和苜蓿素生物合成的快速增加。在健康的苜蓿植株中,转录本的最高水平在根和根瘤中检测到,这与这些组织中苜蓿素及其共轭物的合成情况一致。紫铆因还原酶基因的克隆为研究和操纵豆科植物紫檀素生物合成提供了一个特定工具。

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