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首页> 外文期刊>Applied and Environmental Microbiology >Cyclic AMP (cAMP) Receptor Protein-cAMP Complex Regulates Heparosan Production in Escherichia coli Strain Nissle 1917
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Cyclic AMP (cAMP) Receptor Protein-cAMP Complex Regulates Heparosan Production in Escherichia coli Strain Nissle 1917

机译:环AMP(cAMP)受体蛋白-cAMP复合物调节大肠杆菌菌株Nissle 1917中的肝素生产

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Heparosan serves as the starting carbon backbone for the chemoenzymatic synthesis of heparin, a widely used clinical anticoagulant drug. The availability of heparosan is a significant concern for the cost-effective synthesis of bioengineered heparin. The carbon source is known as the pivotal factor affecting heparosan production. However, the mechanism by which carbon sources control the biosynthesis of heparosan is unclear. In this study, we found that the biosynthesis of heparosan was influenced by different carbon sources. Glucose inhibits the biosynthesis of heparosan, while the addition of either fructose or mannose increases the yield of heparosan. Further study demonstrated that the cyclic AMP (cAMP)-cAMP receptor protein (CRP) complex binds to the upstream region of the region 3 promoter and stimulates the transcription of the gene cluster for heparosan biosynthesis. Site-directed mutagenesis of the CRP binding site abolished its capability of binding CRP and eliminated the stimulative effect on transcription. 1H nuclear magnetic resonance (NMR) analysis was further performed to determine the Escherichia coli strain Nissle 1917 (EcN) heparosan structure and quantify extracellular heparosan production. Our results add to the understanding of the regulation of heparosan biosynthesis and may contribute to the study of other exopolysaccharide-producing strains.
机译:肝素是化学合成肝素的起始碳骨架,肝素是一种广泛使用的临床抗凝药物。肝素的可获得性是生物工程肝素的经济有效合成的重要关注。碳源是影响肝素生产的关键因素。但是,碳源控制肝素生物合成的机理尚不清楚。在这项研究中,我们发现肝素的生物合成受到不同碳源的影响。葡萄糖抑制肝素的生物合成,而果糖或甘露糖的添加增加肝素的产率。进一步的研究表明,环状AMP(cAMP)-cAMP受体蛋白(CRP)复合物与区域3启动子的上游区域结合并刺激肝素生物合成的基因簇的转录。 CRP结合位点的定点诱变取消了其结合CRP的能力,并消除了对转录的刺激作用。进一步进行1 H核磁共振(NMR)分析以确定大肠杆菌菌株Nissle 1917(EcN)肝素结构并量化细胞外肝素的产生。我们的研究结果加深了对肝素生物合成调控的理解,并可能有助于研究其他产胞外多糖的菌株。

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