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Fluorimetric assay for measuring Dns-His-Lys-Arg-His-Lys cleaving enzyme using high-performance liquid chromatography
Authors:Toshiyuki Chikuma  Yoko ShimabukuroTakeya Iguchi  Akira TanakaKyoji Taguchi  Takeshi KatoMitsune Yamaguchi  Hiroshi Hojo
Affiliation:a Department of Pharmaceutical Analytical Chemistry, Showa Pharmaceutical University, Machida-shi, Tokyo 194-8543, Japan
b Department of Hygienic Chemistry, Showa Pharmaceutical University, 3-3165 Higashi-tamagawagakuen, Machida-shi, Tokyo 194-8543, Japan
c Department of Neuroscience, Showa Pharmaceutical University, Machida-shi, Tokyo 194-8543, Japan
d Laboratory of Molecular Recognition, Graduate School of Integrated Science, Yokohama City University, Yokohama 236-0027, Japan
Abstract:A rapid and sensitive assay for the determination of Dns-His-Lys-Arg-His-Lys cleaving enzyme activity is reported. This assay is based on fluorimetric detection of a dansylated dipeptide, 5-dimethylaminonaphthalene-1-sulfonyl-His-Lys, enzymatically formed from the substrate 5-dimethylaminonaphthalene-1-sulfonyl-His-Lys-Arg-His-d-Lys, after separation by high-performance liquid chromatography (HPLC) using a C-18 reversed-phase column by isocratic elution. This assay is sensitive enough to measure 5-dimethylaminonaphthalene-1-sulfonyl-His-Lys at concentrations as low as 7 pmol, and yields highly reproducible results and requires less than 9.0 min per sample for separation and quantitation. The optimum pH for Dns-His-Lys-Arg-His-Lys cleaving enzyme activity was 7.5-8.0. The Michaelis constant (Km) and the maximum velocity (Vmax) values were 33.3 μM and 47.07 pmol/(μg h), respectively with the use of enzyme extract obtained from bovine pituitary. By using this assay, axonal transport of this enzyme activity was observed 48 h after double ligations of rat sciatic nerves. The high sensitivity and selectivity of this assay would be useful for clarification of the physiological role of this enzyme.
Keywords:Dns-His-Lys-Arg-His-Lys cleaving enzyme   Assay   High-performance liquid chromatography   Fluorescence
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