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首页> 外文期刊>BMC Biotechnology >Construction of uricase-overproducing strains of Hansenula polymorpha and its application as biological recognition element in microbial urate biosensor
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Construction of uricase-overproducing strains of Hansenula polymorpha and its application as biological recognition element in microbial urate biosensor

机译:多形汉逊酵母尿酸酶高产菌株的构建及其在微生物尿酸盐生物传感器中的生物识别作用

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摘要

Background The detection and quantification of uric acid in human physiological fluids is of great importance in the diagnosis and therapy of patients suffering from a range of disorders associated with altered purine metabolism, most notably gout and hyperuricaemia. The fabrication of cheap and reliable urate-selective amperometric biosensors is a challenging task. Results A urate-selective microbial biosensor was developed using cells of the recombinant thermotolerant methylotrophic yeast Hansenula polymorpha as biorecognition element. The construction of uricase (UOX) producing yeast by over-expression of the uricase gene of H. polymorpha is described. Following a preliminary screening of the transformants with increased UOX activity in permeabilized yeast cells the optimal cultivation conditions for maximal UOX yield namely a 40-fold increase in UOX activity were determined. The UOX producing cells were coupled to horseradish peroxidase and immobilized on graphite electrodes by physical entrapment behind a dialysis membrane. A high urate selectivity with a detection limit of about 8 μM was found. Conclusion A strain of H. polymorpha overproducing UOX was constructed. A cheap urate selective microbial biosensor was developed.
机译:背景技术人的生理液中尿酸的检测和定量在诊断和治疗患有与嘌呤代谢改变有关的一系列疾病的患者中非常重要,其中最明显的是痛风和高尿酸血症。制造便宜且可靠的尿酸盐选择性安培生物传感器是一项艰巨的任务。结果以重组耐热甲基多形汉逊酵母(Hansenula polymorpha)细胞为生物识别元件,开发了一种尿酸盐选择性微生物传感器。描述了通过过量表达多形汉逊酵母的尿酸酶基因来构建产生尿酸酶(UOX)的酵母。在对透化的酵母细胞中具有增加的UOX活性的转化子进行初步筛选后,确定了最大UOX产量的最佳培养条件,即UOX活性增加了40倍。产生UOX的细胞与辣根过氧化物酶偶联,并通过物理包埋在透析膜后面而固定在石墨电极上。发现尿酸盐选择性高,检测限约为8μM。结论构建了高产UOX的多形汉逊酵母菌株。开发了一种廉价的尿酸盐选择性微生物生物传感器。

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