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Characterization and expression of Arabidopsis UDP-sugar pyrophosphorylase

机译:拟南芥UDP糖焦磷酸化酶的表征与表达

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At5g52560, a homolog of pea (Pisum sativum) UDP-sugar pyrophosphorylase (PsUSP) was functionally annotated by expression in Escherichia coli and subsequent characterization of substrate specificity and kinetic properties. Arabidopsis contains a single USP gene (AtUSP) and evaluation of gene databases suggests that USP is unique to plants. The 69 kDa AtUSP gene product exhibited high activity with Glc-1-P, GIcA-1-P and Gal-1-P, but low activity with GlcNAc-1-P, Fuc-1-P, Man-1-P, inositol-1-P or Gle-6-P. AtUSP was activated by magnesium and preferred UTP as co-substrate. Apparent K-m values for GlcA-1-P, Glc-1-P and UTP were 0.13 mM, 0.42 mM and 0.14 mM, respectively. In the reverse direction (pyrophosphorolysis), the apparent K-m values for UDP-GlcA, UDP-Glc and pyrophosphate were 0.56 mM, 0.72 mM and 0.15 mM, respectively. USP enzyme activity (UDP-GlcA -> GlcA-1-P) was detected in Arabidopsis tissues with highest activity found in the inflorescence. As determined by semi-quantitative RT-PCR, AtUSP transcript is widely expressed with high levels detected in the inflorescence. To evaluate tissue-specific expression of AtUSP, histochemical GUS staining of plants transformed with AtUSFprom:GUS constructs was performed. In 7-day-old seedlings, GUS staining was detected in cotyledons, trichomes and vascular tissues of the primary root. In the inflorescence of older plants, high levels of GUS staining were detected in cauline leaves, the epidermis of the stem and in pollen. In silico analysis of AtUSP expression in developing pollen indicates that transcript levels increase as development proceeds from the uninucleate to the tricellular stage. The results suggest that AtUSP plays an important role in pollen development in Arabidopsis. (c) 2006 Elsevier SAS. All rights reserved.
机译:At5g52560是豌豆(Pisum sativum)UDP糖焦磷酸化酶(PsUSP)的同源物,可通过在大肠杆菌中表达以及随后表征底物特异性和动力学特性进行功能注释。拟南芥包含单个USP基因(AtUSP),基因数据库评估表明USP对植物而言是独特的。 69 kDa AtUSP基因产物对Glc-1-P,GIcA-1-P和Gal-1-P表现出高活性,而对GlcNAc-1-P,Fuc-1-P,Man-1-P,肌醇-1-P或Gle-6-P。 AtUSP被镁激活,并首选UTP作为共底物。 GlcA-1-P,Glc-1-P和UTP的表观K-m值分别为0.13 mM,0.42 mM和0.14 mM。在相反的方向(焦磷酸解),UDP-GlcA,UDP-Glc和焦磷酸盐的表观K-m值分别为0.56 mM,0.72 mM和0.15 mM。在花序中发现的活性最高的拟南芥组织中检测到USP酶活性(UDP-GlcA-> GlcA-1-P)。如通过半定量RT-PCR确定的,AtUSP转录物被广泛表达并在花序中检测到高水平。为了评估AtUSP的组织特异性表达,对用AtUSFprom:GUS构建体转化的植物进行了组织化学GUS染色。在7天大的幼苗中,在初生根的子叶,毛状体和维管组织中检测到GUS染色。在老龄植物的花序中,在茎生叶,茎表皮和花粉中检测到高水平的GUS染色。对发育中的花粉中AtUSP表达的计算机分析表明,转录水平随着发育从单核阶段发展到三细胞阶段而增加。结果表明AtUSP在拟南芥的花粉发育中起重要作用。 (c)2006年Elsevier SAS。版权所有。

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