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Nanostructure-Initiator Mass Spectrometry (NIMS) for the Analysis of Enzyme Activities

机译:用于酶活性分析的纳米结构引发剂质谱(NIMS)

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摘要

Enzymes are essential to innumerable vital processes in all fields of life. Additionally, enzymatic activities are utilized in a multitude of biological, medical, and technical applications. Using cellulases and other glycoside hydrolases for the conversion of lignocellulosic biomass into biofuel has become an active area of research for applied enzymology. Development of high-throughput, high-specificity enzyme assays for glycoside hydrolases is critical to identify, characterize, and optimize suchactivities for efficient biomass degradation. Here, we present a detailed protocol describing our recently reported nanostructure-initiator mass spectrometry (NIMS)-based technique for the rapid analysis of glycoside hydrolase activities. NIMS enzyme activity (Nimzyme) assays can be used to characterize already known, or identify novel glycoside hydrolases. Importantly, several enzymatic activities can be tested in parallel in a multiplexed arrangement and under a broad range of assay conditions.
机译:酶对于生活各个领域中无数的重要过程至关重要。另外,酶活性被用于许多生物学,医学和技术应用中。使用纤维素酶和其他糖苷水解酶将木质纤维素生物质转化为生物燃料已成为应用酶学研究的活跃领域。对于糖苷水解酶的高通量,高特异性酶测定方法的开发对于鉴定,表征和优化此类活性以有效降解生物质至关重要。在这里,我们提出了详细的协议,描述了我们最近报道的基于纳米结构引发剂质谱(NIMS)的技术,用于快速分析糖苷水解酶的活性。 NIMS酶活性(Nimzyme)测定可用于表征已知的或鉴定新型糖苷水解酶。重要的是,可以在多种测定条件下,以多重排列的方式并行测试几种酶活性。

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