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Purification properties and alternate substrate specificities of arginase from two different sources: Vigna catjang cotyledon and buffalo liver

机译:来自两种不同来源的精氨酸酶的纯化性质和替代底物特异性:Vigna catjang子叶和水牛肝

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摘要

Arginase was purified from Vigna catjang cotyledons and buffalo liver by chromatographic separations using Bio-Gel P-150, DEAE-cellulose and arginine AH Sepharose 4B affinity columns. The native molecular weight of an enzyme estimated on Bio-Gel P-300 column for Vigna catjang was 210 kDa and 120 kDa of buffalo liver, while SDS-PAGE showed a single band of molecular weight 52 kDa for cotyledon and 43 kDa for buffalo liver arginase. The kinetic properties determined for the purified cotyledon and liver arginase showed an optimum pH of 10.0 and pH 9.2 respectively. Optimal cofactor Mn++ ion concentration was found to be 0.6 mM for cotyledon and 2 mM for liver arginase. The Michaelis-Menten constant for cotyledon arginase and hepatic arginase were found to be 42 mM and 2 mM respectively. The activity of guanidino compounds as alternate substrates for Vigna catjang cotyledon and buffalo liver arginase is critically dependent on the length of the amino acid side chain and the number of carbon atoms. In addition to L-arginine cotyledon arginase showed substrate specificity towards agmatine and L-canavanine, whereas the liver arginase showed substrate specificity towards only L-canavanine.
机译:使用Bio-Gel P-150,DEAE-纤维素和精氨酸AH Sepharose 4B亲和柱,通过色谱分离从Vigna catjang子叶和水牛肝中纯化精氨酸酶。在Bio-Gel P-300色谱柱上估计的Vigna catjang的酶的天然分子量为210 kDa和120 kDa的水牛肝,而SDS-PAGE显示单个子带的分子量为子叶52 kDa,水牛为43 kDa。精氨酸酶。测定纯化的子叶和肝精氨酸酶的动力学性质分别显示最佳pH为10.0和pH 9.2。子叶的最佳辅因子Mn ++ 离子浓度为0.6 mM,肝脏精氨酸酶为2 mM。发现子叶精氨酸酶和肝精氨酸酶的Michaelis-Menten常数分别为42mM和2mM。胍基化合物作为Vigna catjang子叶和水牛肝精氨酸酶的替代底物的活性关键取决于氨基酸侧链的长度和碳原子数。除L-精氨酸外,子叶精氨酸酶还显示出对胍丁胺和L-canavanine的底物特异性,而肝精氨酸酶仅显示出对L-canavanine的底物特异性。

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