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ESI-MS in the study of the activity of α-chymotrypsin in aqueous surfactant media

机译:ESI-MS在水性表面活性剂介质中研究α-胰凝乳蛋白酶的活性

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The catalytic activity of α-chymotrypsin on a model and a peptide substrate, in the supramolecular system "enzyme-surfactant" in water solution, has been studied by electrospray ionization mass spectrometry. Hydrolysis of N-succinyl-L-phenylalanine p-nitroanilide as the model compound, catalysed by α-chymotrypsin in the presence of monomeric cetyltributylammonium bromide, has been followed by UV and ESI-MS detection. Kinetic data, which are essentially identical independent of their determination techniques, show a twelve fold improvement of the enzyme catalytic efficiency when compared with the reaction carried out in the absence of the additive. Once validated, the ESI-MS technique was used to study the hydrolytic activity of the enzyme on a peptide substrate like substance P; it is worth emphasising that the spectrophotometric detection cannot be employed on peptides, where the chromophores are untouched by the hydrolytic process. Substance P hydrolyses in aqueous surfactant following dichotomic kinetics, which are initially rapid but then slow down as the reaction progress. The results presented in this paper are expected to extend studies on biocatalysis in aqueous surfactant media to a wide range of substrates, independent of their spectroscopic properties.
机译:通过电喷雾电离质谱法研究了α-胰凝乳蛋白酶对模型和肽底物在超分子系统“酶表面活性剂”在水溶液中的催化活性。在单体十六烷基三丁基铵溴化物的存在下,α-胰凝乳蛋白酶催化N-琥珀酰-L-苯丙氨酸对硝基苯胺水解为模型化合物,然后进行UV和ESI-MS检测。动力学数据基本上是相同的,而与它们的测定技术无关,与在没有添加剂的情况下进行的反应相比,酶催化效率提高了十二倍。一旦通过验证,ESI-MS技术将用于研究酶在肽底物(如P物质)上的水解活性。值得强调的是,分光光度法检测不能用于水解过程不影响发色团的肽。物质P按照二分动力学在水性表面活性剂中水解,该动力学最初是快速的,但随后随着反应的进行而减慢。预期本文提出的结果将把在水性表面活性剂介质中的生物催化研究扩展到广泛的底物上,而与它们的光谱性质无关。

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