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Turning Tryptophanase into Odor-Generating Biosensors

机译:将色氨酸酶变成产生异味的生物传感器

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摘要

An odor-based sensor system that exploits the metabolic enzyme tryptophanase (TPase) as the key component is reported. This enzyme is able to convert an odorless substrate like S-methyl-L-cysteine or L-tryptophan into the odorous products methyl mercaptan or indole. To make a biosensor, TPase was biotinylated so that it could be coupled with a molecular recognition element, such as an antibody, to develop an ELISA-like assay. This method was used for the detection of an antibody present in mm concentrations by the human nose. TPase can also be combined with the enzyme pyridoxal kinase (PKase) for use in a coupled assay to detect adenosine 5'-triphosphate (ATP). When ATP is present in the low μM concentration range, the coupled enzymatic system generates an odor that is easily detectable by the human nose. Biotinylated TPase can be combined with various biotin-labeled molecular recognition elements, thereby enabling a broad range of applications for this odor-based reporting system.
机译:报告了一种基于气味的传感器系统,该系统利用了代谢酶色氨酸酶(TPase)作为关键成分。该酶能够将无味的底物(如S-甲基-L-半胱氨酸或L-色氨酸)转化为有味的产物甲硫醇或吲哚。为了制造生物传感器,将TPase进行了生物素化处理,使其可以与分子识别元件(例如抗体)偶联,以开发类似ELISA的检测方法。该方法用于检测人鼻中毫米浓度的抗体。 TPase还可以与吡pyr醛激酶(PKase)结合使用,以进行偶联测定以检测5'-三磷酸腺苷(ATP)。当ATP在低μM浓度范围内存在时,偶联的酶促系统会产生一种容易被人的鼻子检测到的气味。生物素化的TPase可以与各种生物素标记的分子识别元件结合使用,从而使这种基于气味的报告系统具有广泛的应用范围。

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