首页> 美国卫生研究院文献>Journal of Bacteriology >A Specialized Aspartokinase Enhances the Biosynthesis of the Osmoprotectants Ectoine and Hydroxyectoine in Pseudomonas stutzeriA1501
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A Specialized Aspartokinase Enhances the Biosynthesis of the Osmoprotectants Ectoine and Hydroxyectoine in Pseudomonas stutzeriA1501

机译:一种专门的天冬氨酸激酶增强了斯图氏假单胞菌A1501中渗透保护剂分泌的电子保护因子和羟考克丁的生物合成。

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摘要

The compatible solutes ectoine and hydroxyectoine are widely produced by bacteria as protectants against osmotic and temperature stress. l-Aspartate-beta-semialdehyde is used as the precursor molecule for ectoine/hydroxyectoine biosynthesis that is catalyzed by the EctABCD enzymes. l-Aspartate-beta-semialdehyde is a central intermediate in different biosynthetic pathways and is produced from l-aspartate by aspartokinase (Ask) and aspartate-semialdehyde-dehydrogenase (Asd). Ask activity is typically stringently regulated by allosteric control to avoid gratuitous synthesis of aspartylphosphate. Many organisms have evolved multiple forms of aspartokinase, and feedback regulation of these specialized Ask enzymes is often adapted to the cognate biochemical pathways. The ectoine/hydroxyectoine biosynthetic genes (ectABCD) are followed in a considerable number of microorganisms by an askgene (ask_ect), suggesting that Ask_Ect is a specialized enzyme for this osmoadaptive biosynthetic pathway. However, none of these Ask_Ect enzymes have been functionally characterized. Pseudomonas stutzeriA1501 synthesizes both ectoine and hydroxyectoine in response to increased salinity, and it possesses two Ask enzymes: Ask_Lys and Ask_Ect. We purified both Ask enzymes and found significant differences with regard to their allosteric control: Ask_LysC was inhibited by threonine and in a concerted fashion by threonine and lysine, whereas Ask_Ect showed inhibition only by threonine. The ectABCD_askgenes from P. stutzeriA1501 were cloned and functionally expressed in Escherichia coli, and this led to osmostress protection. An E. colistrain carrying the plasmid-based ectABCD_askgene cluster produced significantly more ectoine/hydroxyectoine than a strain expressing the ectABCDgene cluster alone. This finding suggests a specialized role for Ask_Ect in ectoine/hydroxyectoine biosynthesis.
机译:细菌广泛产生相容的溶质ectoine和hydroxyectoine,作为针对渗透压和温度胁迫的保护剂。 1-天冬氨酸-β-半醛被用作由EctABCD酶催化的果胶/羟基果胶生物合成的前体分子。 1-天冬氨酸-β-半醛是不同生物合成途径中的中心中间体,由天冬氨酸激酶(Ask)和天冬氨酸-半醛-脱氢酶(Asd)由1-天冬氨酸产生。通常通过变构控制严格地要求问活性,以避免无偿合成天冬氨酰磷酸。许多生物已经进化出多种形式的天冬氨酸激酶,并且这些专门的Ask酶的反馈调节通常适应于相关的生化途径。在大量微生物中,外源蛋白/羟基外源蛋白生物合成基因(ectABCD)之后是askgene(ask_ect),这表明Ask_Ect是这种渗透适应性生物合成途径的专门酶。但是,这些Ask_Ect酶均未进行功能鉴定。斯氏假单胞菌(Pseudomonas stutzeriA1501)响应于盐度的增加而合成果胶和羟基果胶,并且它拥有两种Ask酶:Ask_Lys和Ask_Ect。我们纯化了两种Ask酶,并发现它们的变构控制方面存在显着差异:Ask_LysC被苏氨酸抑制,同时被苏氨酸和赖氨酸协同作用,而Ask_Ect仅被苏氨酸抑制。克隆了来自斯图氏假单胞菌A1501的ectABCD_askgenes并在大肠杆菌中功能性表达,这导致了对渗透压的保护。带有基于质粒的ectABCD_askgene簇的大肠杆菌比单独表达ectABCDgene簇的菌株产生更多的胞嘧啶/羟基ectoine。该发现表明Ask_Ect在油桃/羟基油桃生物合成中具有特殊作用。

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