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首页> 外文期刊>Physiologia plantarum >Biochemical and physiological characterization of Arabidopsis thaliana AtCoAse: a Nudix CoA hydrolyzing protein that improves plant development
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Biochemical and physiological characterization of Arabidopsis thaliana AtCoAse: a Nudix CoA hydrolyzing protein that improves plant development

机译:拟南芥AtCoAse的生化和生理特性:改善植物发育的Nudix CoA水解蛋白

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摘要

CoA is required for many synthetic and degradative reactions in intermediary metabolism and is the principal acyl carrier in prokaryotic and eukaryotic cells. CoA is synthesized in five steps from pantothenate, and recently, the CoA biosynthetic genes of Arabidopsis have all been identified and characterized. Here, we demonstrate the biochemical and physiological characterization of a pyrophosphatase from Arabidopsis thaliana, called AtCoAse (locus tag At5g45940), cleaving CoA to 4'-phosphopantetheine and 3',5'-adenosine-diphosphate in the presence of Mgpo/Mnpo ions. The CoA cleaving enzyme is a member of the Nudix hydrolases, pyrophosphatases that hydrolyze nucleoside diphosphates, already described as CoAse and now further characterized in detail by us. Mutagenesis of residues of the so-called Nudix and NuCoA motifs drastically reduced the hydrolase activity. AtCoAse is not absolute specific for CoA, and in the presence of Mnpo ions, a minor hydrolyzing activity was observed with NADH as substrate. The AtCoAse expression is ubiquitous, strongly in flower and unaffected by abiotic stress. The immunohistochemical localization indicates that the AtCoAse protein is observed in the cytoplasm of distinct cells types from different heterotrophic Arabidopsis tissues, mainly restricted to the vascular elements of the root and shoot and in flower and developing embryo. Transgenic Arabidopsis plants, with increased AtCoAse expression, show altered growth rates and development, expanding their live cycle far away from the wild-type.
机译:CoA是中间代谢中许多合成和降解反应所必需的,并且是原核和真核细胞中的主要酰基载体。从泛酸到五步合成CoA,最近,拟南芥的CoA生物合成基因已全部鉴定和鉴定。在这里,我们证明了来自拟南芥的焦磷酸酶的生物化学和生理学特性,称为AtCoAse(基因座标签At5g45940),在Mgpo / Mnpo离子存在下,将CoA裂解为4'-磷酸泛素和3',5'-腺苷二磷酸。 CoA裂解酶是Nudix水解酶(焦磷酸酶)的成员,该酶水解核苷二磷酸,已经描述为CoAse,现在由我们进一步详细描述。对所谓的Nudix和NuCoA基序的残基进行诱变会大大降低水解酶的活性。 AtCoAse对CoA并不是绝对特异的,并且在存在Mnpo离子的情况下,以NADH为底物观察到较小的水解活性。 AtCoAse表达无处不在,在花中很强,不受非生物胁迫的影响。免疫组织化学定位表明AtCoAse蛋白存在于来自异养拟南芥组织的不同细胞类型的细胞质中,主要局限于根和茎以及花和发育中的胚的血管成分。 AtCoAse表达增加的转基因拟南芥植物显示出改变的生长速率和发育,使它们的生存周期远离野生型。

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