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基于高效液相色谱的动力学分析有助于对具有多种反应产物和热酶变性的系统进行分析。

HPLC-based kinetics assay facilitates analysis of systems with multiple reaction products and thermal enzyme denaturation.

作者信息

Klingaman Chase A, Wagner Matthew J, Brown Justin R, Klecker John B, Pauley Ethan H, Noldner Colin J, Mays Jared R

机构信息

Augustana University, Department of Chemistry, 2001 S. Summit Ave., Sioux Falls, SD 57197, USA.

Augustana University, Department of Chemistry, 2001 S. Summit Ave., Sioux Falls, SD 57197, USA.

出版信息

Anal Biochem. 2017 Jan 1;516:37-47. doi: 10.1016/j.ab.2016.10.010. Epub 2016 Oct 11.

Abstract

Glucosinolates are plant secondary metabolites abundant in Brassica vegetables that are substrates for the enzyme myrosinase, a thioglucoside hydrolase. Enzyme-mediated hydrolysis of glucosinolates forms several organic products, including isothiocyanates (ITCs) that have been explored for their beneficial effects in humans. Myrosinase has been shown to be tolerant of non-natural glucosinolates, such as 2,2-diphenylethyl glucosinolate, and can facilitate their conversion to non-natural ITCs, some of which are leads for drug development. An HPLC-based method capable of analyzing this transformation for non-natural systems has been described. This current study describes (1) the Michaelis-Menten characterization of 2,2-diphenyethyl glucosinolate and (2) a parallel evaluation of this analogue and the natural analogue glucotropaeolin to evaluate effects of pH and temperature on rates of hydrolysis and product(s) formed. Methods described in this study provide the ability to simultaneously and independently analyze the kinetics of multiple reaction components. An unintended outcome of this work was the development of a modified Lambert W(x) which includes a parameter to account for the thermal denaturation of enzyme. The results of this study demonstrate that the action of Sinapis alba myrosinase on natural and non-natural glucosinolates is consistent under the explored range of experimental conditions and in relation to previous accounts.

摘要

硫代葡萄糖苷是十字花科蔬菜中丰富的植物次生代谢产物,是硫代葡萄糖苷酶(一种硫代葡萄糖苷水解酶)的底物。酶介导的硫代葡萄糖苷水解形成多种有机产物,包括异硫氰酸酯(ITCs),人们已对其对人体的有益作用进行了探索。已证明硫代葡萄糖苷酶可耐受非天然硫代葡萄糖苷,如2,2-二苯乙基硫代葡萄糖苷,并可促进其转化为非天然异硫氰酸酯,其中一些是药物开发的先导化合物。已经描述了一种基于高效液相色谱的方法,能够分析非天然系统中的这种转化。本研究描述了(1)2,2-二苯乙基硫代葡萄糖苷的米氏特征,以及(2)对该类似物和天然类似物葡萄糖硫苷的平行评估,以评估pH和温度对水解速率和形成的产物的影响。本研究中描述的方法提供了同时独立分析多个反应组分动力学的能力。这项工作的一个意外结果是开发了一种改进的朗伯W(x),其中包括一个考虑酶热变性的参数。本研究结果表明,在探索的实验条件范围内,白芥子硫苷酶对天然和非天然硫代葡萄糖苷的作用与先前报道一致。

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