首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Determination of specific activities and kinetic constants of biotinidase and lipoamidase in LEW rat and Lactobacillus casei (Shirota)
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Determination of specific activities and kinetic constants of biotinidase and lipoamidase in LEW rat and Lactobacillus casei (Shirota)

机译:测定LEW大鼠和干酪乳杆菌(Shirota)中生物素酶和脂酰胺酶的比活和动力学常数

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摘要

Enzyme kinetic parameters, such as K-m, V-max (or V), k(eat)/K-m, and K-i (by biotin or lipoic acid) for biotinidase and lipoamidase were determined in Lewis (LEW) rat and Lactobacillus casei (Shirota) using fluorimetric high-performance liquid chromatography (HPLC). It was found that the final protein concentration below 0.1 mg/ml is sufficient to obtain linear hydrolytic reaction and to determine the Michaelis-Menten type kinetic parameters (K-m, V K-i). We applied this HPLC enzyme assay method onto the rat and some bacteria. The highest specific activities (Vs) for biotinidase were found in Lactobacillus casei (Shirota) and rat kidney. It was also found that the largest K-i by product for biotinidase and lipoamidase were present in the Lactobacillus casei (Shirota). There has been found specie (between rat and mouse) differences and tissue (organ) differences, together with tissue region differences and sex differences in some tissues. Summary of the distributions of both enzymes in LEW rat was also presented. Therefore, this HPLC determination method for the enzyme kinetic parameters in tissues is expected to be an indispensable tool for the investigation of the various diseases in humans. (c) 2006 Elsevier B.V. All rights reserved.
机译:在Lewis(LEW)大鼠和干酪乳杆菌(Shirota)中测定了生物素酶和脂酰胺酶的酶动力学参数,例如Km,V-max(或V),k(eat)/ Km和Ki(通过生物素或硫辛酸)。使用荧光高效液相色谱(HPLC)。已经发现,低于0.1mg / ml的最终蛋白质浓度足以获得线性水解反应并确定Michaelis-Menten型动力学参数(K-m,V K-1)。我们将这种HPLC酶测定方法应用于大鼠和一些细菌。在酪乳杆菌(Shirota)和大鼠肾脏中发现了生物素酶的最高比活(Vs)。还发现在干酪乳杆菌(Shirota)中存在生物素酶和脂酰胺酶的最大K-i副产物。已经发现物种(大鼠和小鼠之间)差异和组织(器官)差异,以及某些组织中的组织区域差异和性别差异。总结了两种酶在LEW大鼠中的分布。因此,这种用于组织中酶动力学参数的HPLC测定方法有望成为研究人类各种疾病的必不可少的工具。 (c)2006 Elsevier B.V.保留所有权利。

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