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首页> 外文期刊>FEMS Microbiology Letters >Improved phosphate biosorption by bacterial surface display of phosphate-binding protein utilizing ice nucleation protein
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Improved phosphate biosorption by bacterial surface display of phosphate-binding protein utilizing ice nucleation protein

机译:利用冰核蛋白通过细菌表面展示磷酸盐结合蛋白来改善磷酸盐的生物吸附

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The conventional enhanced biological phosphorus removal (EBPR) system often deteriorates at low chemical oxygen demand ( COD) or under aeration conditions. A new approach that incorporates phosphate-eutrophic wastewater remediation was introduced through immobilization of an intracellular phosphate-binding protein (PBP) onto the surface of Pseudomonas putida or Escherichia coli, using the N-terminal anchor (InaQ-N) of a newly identified ice nucleation protein from Pseudomonas syringae. A green fluorescent protein-fusion protein was expressed and used to confirm surface localization. The PBP was then targeted to the surface of E. coli JM109 and P. putida AB92019. The engineered P. putida and E. coli microorganisms were capable of absolute biosorption of total phosphates at rates of 60 and 80 mg L-1, respectively, over 5 h. In the recombinant P. putida cells, a surface-immobilized PBP fusion that had three tandemly repeated InaQ-Ns exhibited the maximum increment in phosphate biosorption, at sixfold compared with the control strain. Even heat-killed recombinant cells of either P. putida or E. coli retained substantial biosorptive activities. The current study demonstrates that the bacterial surface display of PBP should be considered as a strong contender for generating organisms capable of functioning in EBPR systems under low COD, resulting in improved removal of eutrophic phosphorus from wastewaters.
机译:传统的增强生物除磷(EBPR)系统通常在化学需氧量低(COD)或曝气条件下恶化。通过使用新鉴定的冰的N端锚点(InaQ-N)将细胞内磷酸盐结合蛋白(PBP)固定在恶臭假单胞菌或大肠杆菌表面上,从而引入了一种结合磷酸盐富营养化废水的新方法。丁香假单胞菌的核蛋白。表达绿色荧光蛋白融合蛋白,并用于确认表面定位。然后将PBP靶向大肠杆菌JM109和恶臭假单胞菌AB92019的表面。经过改造的恶臭假单胞菌和大肠杆菌能够在5小时内以60和80 mg L-1的速率绝对吸附总磷酸盐。在重组恶臭假单胞菌细胞中,具有三个串联重复的InaQ-N的表面固定PBP融合物在磷酸盐生物吸附方面表现出最大的增量,是对照菌株的六倍。甚至恶臭假单胞菌或大肠杆菌的热杀死的重组细胞也保留了相当大的生物吸附活性。当前的研究表明,PBP的细菌表面展示应被认为是在低COD情况下产生能够在EBPR系统中起作用的生物体的有力竞争者,从而改善了废水中富营养化磷的去除。

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