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Two newly identified membrane-associated and plastidic tomato HXKs: characteristics, predicted structure and intracellular localization

机译:两种新近鉴定的膜相关和质体番茄HXK:特征,预测的结构和细胞内定位

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摘要

Two new tomato hexokinase genes, LeHXK3 and LeHXK4, were cloned and characterized, placing tomato as the first plant with four characterized HXK genes. Based on their sequence, LeHXK3 is the third membrane-associated (type-B) and LeHXK4 is the first plastidic (type-A) HXK identified in tomato. Expression of HXK-GFP fusion proteins in protoplasts indicated that the LeHxk3 enzyme is associated with the mitochondria while LeHxk4 is localized in plastids. Furthermore, LeHxk4::GFP fusion protein is found within stromules, suggesting transport of LeHxk4 between plastids. Structure prediction of the various plant HXK enzymes suggests that unlike the plastidic HXKs, the predicted membrane-associated HXKs are positively charged near their putative N-terminal membrane anchor domain, which might enhance their association with the negatively charged membranes. LeHxk3 and LeHxk4 were analyzed following expression in yeast. Both enzymes have higher affinity for glucose relative to fructose and are inhibited by ADP. Yet, unlike the other HXKs, the stromal HXK has higher Vmax with glucose than with fructose. Expression analysis of the four HXK genes in tomato tissues demonstrated that LeHXK1 and LeHXK4 are the dominant HXKs in all tissues examined. Notably, the plastidic LeHXK4 is expressed in all tissues including starchless, non-photosynthetic sink tissues, such as pink and red fruits, implying phosphorylation of imported hexoses in plastids. It has been suggested that trehalose 6-phosphate (T6P) might inhibit HXK activity. However, none of the yeast-expressed tomato HXK genes was sensitive either to T6P or to trehalose, suggesting that unlike fungi HXKs, plant HXKs are not regulated by T6P.
机译:克隆并鉴定了两个新的番茄己糖激酶基因LeHXK3和LeHXK4,使番茄成为具有四个已鉴定HXK基因的第一株植物。根据它们的序列,LeHXK3是第三个与膜相关的(B型),LeHXK4是在番茄中鉴定的第一个质体(A型)HXK。 HXK-GFP融合蛋白在原生质体中的表达表明LeHxk3酶与线粒体相关,而LeHxk4则位于质体中。此外,在基质中发现LeHxk4 :: GFP融合蛋白,表明LeHxk4在质体之间运输。各种植物HXK酶的结构预测表明,与质体HXK不同,预测的膜相关HXK在其推定的N端膜锚定域附近带正电,这可能增强它们与带负电的膜的缔合。 LeHxk3和LeHxk4在酵母中表达后进行了分析。相对于果糖,这两种酶对葡萄糖具有更高的亲和力,并被ADP抑制。但是,与其他HXK不同,基质HXK的葡萄糖Vmax高于果糖。番茄组织中四个HXK基因的表达分析表明,LeHXK1和LeHXK4是所有检查的组织中的主要HXK。值得注意的是,质体LeHXK4在所有组织中表达,包括无淀粉,非光合作用的沉陷组织,例如粉红色和红色水果,这意味着质体中导入的己糖磷酸化。已经提出海藻糖6-磷酸(T6P)可能抑制HXK活性。然而,酵母表达的番茄HXK基因均不对T6P或海藻糖敏感,这表明与真菌HXK不同,植物HXK不受T6P调控。

著录项

  • 来源
    《Planta》 |2006年第6期|1341-1352|共12页
  • 作者单位

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

    Institute of Plant Sciences Agricultural Research Organization The Volcani CenterDelaware Biotechnology Institute;

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

    Department of Chemistry Technion Israel Institute of Technology;

    Institute of Plant Sciences Agricultural Research Organization The Volcani Center;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Green-fluorescent protein; Hexokinase localization; Hexose phosphorylation; Tomato (Lycopersicon esculentum); Protein structure; Trehalose;

    机译:绿色荧光蛋白;己糖激酶定位;己糖磷酸化;番茄;蛋白质结构;海藻糖;

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