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大麦(Hordeum vulgare L.)肌醇单磷酸酶:基因结构与酶特性

Barley (Hordeum vulgare L.) inositol monophosphatase: gene structure and enzyme characteristics.

作者信息

Fu Jianming, Peterson Kevin, Guttieri Mary, Souza Edward, Raboy Victor

机构信息

Research and Extension Center, University of Idaho, 1699 S 2700 W, Aberdeen, ID 83210, USA.

出版信息

Plant Mol Biol. 2008 Aug;67(6):629-42. doi: 10.1007/s11103-008-9343-3. Epub 2008 May 21.

Abstract

The cellular myo-inositol (Ins) pool is important to many metabolic and signaling pathways in plants. Ins monophosphatase (IMPase; EC 3.1.3.25) activity is essential for the de novo synthesis of myo-Inositol (Ins), and for recycling of Ins in Ins(1,4,5)P3. However, proteins encoded by at least one family of IMP genes also have L-galactose-1-P phosphatase activity important to ascorbic acid synthesis, indicating a bifunctionality that links these two branches of carbon metabolism. As part of research into the regulation of Ins synthesis and supply during seed development, the barley IMP-1 gene and gene products were studied. The 1.4 kb barley IMP-1 promoter contains one low temperature response element (RE), two heat shock REs, one gibberellin and two auxin REs, and five sugar REs. Barley IMP-1 is expressed in all tissues assayed, and expression levels were not greatly altered by abiotic stress treatments. Reduced use of Ins for Ins P6 synthesis in developing seed of barley low phytic acid (lpa) mutants results in Ins accumulation, and IMP-1 expression is reduced in proportion to the increase in Ins level. The barley recombinant enzyme had a lower Km, indicating higher affinity, for D/L-Ins(3)P1 (Km = 9.7 microM) as compared with reported Km (Ins P1) values for other eukaryotic IMPases (43-330 microM) or with a reported Km (L-Gal-1P) of 150 microM for a kiwifruit (Actinidia deliciosa) enzyme. These and other data indicate that the barley IMP-1 gene is regulated at least in part in response to Ins metabolic needs, and that the enzyme it encodes displays catalytic properties well suited for a role in Ins synthesis, in addition to other roles as an L-gal-1-P phosphatase important to ascorbate synthesis, or as an IMPase important to Ins(1,4,5)P3 signal recycling.

摘要

细胞内的肌醇(Ins)库对植物中的许多代谢和信号通路都很重要。肌醇单磷酸酶(IMPase;EC 3.1.3.25)活性对于肌醇(Ins)的从头合成以及Ins(1,4,5)P3中Ins的循环利用至关重要。然而,至少一个IMP基因家族编码的蛋白质还具有对维生素C合成很重要的L-半乳糖-1-磷酸酶活性,这表明了一种将这两个碳代谢分支联系起来的双功能性。作为种子发育过程中Ins合成和供应调控研究的一部分,对大麦IMP-1基因及其基因产物进行了研究。1.4 kb的大麦IMP-1启动子包含一个低温响应元件(RE)、两个热激RE、一个赤霉素和两个生长素RE,以及五个糖RE。大麦IMP-1在所有检测的组织中都有表达,并且非生物胁迫处理并未使其表达水平发生很大改变。在大麦低植酸(lpa)突变体发育种子中,用于Ins P6合成的Ins使用量减少导致Ins积累,并且IMP-1表达量与Ins水平的增加成比例降低。与其他真核IMPases报道的Km(Ins P1)值(43 - 330 microM)或猕猴桃(中华猕猴桃)一种酶报道的Km(L-Gal-1P)值150 microM相比,大麦重组酶对D/L-Ins(3)P1(Km = 9.7 microM)具有更低的Km,表明其具有更高的亲和力。这些以及其他数据表明,大麦IMP-1基因至少部分地受到Ins代谢需求的调控,并且它所编码的酶除了作为对维生素C合成很重要的L-半乳糖-1-磷酸酶或对Ins(1,4,5)P3信号循环很重要的IMPase发挥其他作用外,还表现出非常适合在Ins合成中发挥作用的催化特性。

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