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A biosensor for all d-amino acids using evolved d-amino acid oxidase.

机译:使用进化的d-氨基酸氧化酶的所有d-氨基酸的生物传感器。

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Determination of the d-amino acid content in foods and in biological samples is a very important task. In order to achieve this goal we developed a biosensor employing the flavoenzyme d-amino acid oxidase from the yeast Rhodotorula gracilis. To produce a device in which the d-amino acid composition does not alter the results, both the wild-type and a number of mutants obtained by rational design and directed evolution approaches were used. An analysis of d-amino acid oxidase mutants activity on d-amino acid mixtures containing various ratios of neutral, acidic, and basic substrates identified the Amberzyme-immobilized T60A/Q144R/K152E and M213G mutants as the best choice: their response shows an only limited dependence on the solution composition when at least 20% of the d-amino acid is made up of d-alanine (standard error is approximately 5-9%). This is the first report, to our knowledge, demonstrating that the entire d-amino acid content can be determined by using a screen-printed electrode amperometric biosensor, with a detection limit of 0.25mM and a mean response time of 10-15min. The d-amino acid assay based on R. gracilis DAAO-biosensor is inexpensive, simple to perform, and rapid: the d-amino acid concentration of a variety of biological samples can be investigated using this assay.
机译:测定食品和生物样品中的d-氨基酸含量是非常重要的任务。为了实现此目标,我们开发了一种生物传感器,该传感器使用了来自酵母红球藻的黄素酶d-氨基酸氧化酶。为了生产其中d-氨基酸组成不改变结果的装置,使用了野生型和通过合理设计和定向进化方法获得的许多突变体。通过对含有不同比例的中性,酸性和碱性底物的d-氨基酸混合物上的d-氨基酸氧化酶突变体活性进行分析,确定了Amberzyme固定的T60A / Q144R / K152E和M213G突变体是最佳选择:它们的反应仅显示出当至少20%的d-氨基酸由d-丙氨酸组成时,溶液对溶液组成的依赖性有限(标准误约为5-9%)。据我们所知,这是第一份报告,表明可以通过使用丝网印刷的电极安培生物传感器确定整个d-氨基酸含量,检测限为0.25mM,平均响应时间为10-15分钟。基于gracilis的DAAO生物传感器的d-氨基酸测定法价格便宜,操作简单且快速:可使用该测定法研究各种生物样品中d-氨基酸的浓度。

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