首页> 外文期刊>The biochemical journal >The asymmetric distribution of enzymic activity between the six subunits of bovine liver glutamate dehydrogenase. Use of d- and l-glutamyl α-chloromethyl ketones (4-amino-6-chloro-5-oxohexanoic acid)
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The asymmetric distribution of enzymic activity between the six subunits of bovine liver glutamate dehydrogenase. Use of d- and l-glutamyl α-chloromethyl ketones (4-amino-6-chloro-5-oxohexanoic acid)

机译:牛肝谷氨酸脱氢酶六亚基与酶活性的不对称分布。使用D-和L-谷氨酸α-氯甲基酮(4-氨基-6-氯-5-氧己酸)

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pA method for the preparation of D- and L-glutamyl alpha-chloromethyl ketones (4-amino-6-chloro-5-oxohexanoic acid) is described. These chloromethyl ketones irreversibly inactivated bovine glutamate dehydrogenase, whereas several other related compounds had no adverse effect on the activity of the enzyme. The inactivation process was shown to be due to the modification of lysine-126. The time-courses for the inactivation and the incorporation of radioactivity from tritiated L-glutamyl alpha-chloromethyl ketone into the glutamate dehydrogenase were biphasic. The results were interpreted to suggest the involvement of ‘negative co-operative’ interactions in the reactivity of lysine-126. From the cumulative evidence it is argued that the first subunit of the enzyme, which takes part in catalysis, makes the largest, and the last the smallest, contribution to the overall catalysis. It is emphasized that three of the six subunits of the enzyme may possess as much as 80% of the total activity of bovine glutamate dehydrogenase./p
机译:[p>描述了制备D-和L-戊二酰α-氯甲基丙酮(4-氨基-6-氯-5-氧己酸)的方法。这些氯甲基酮不可逆转地灭活牛谷氨酸脱氢酶,而几种其他相关化合物对酶的活性没有不利影响。灭活过程被显示为赖氨酸-126的改性是由于赖氨酸-126的改性。将灭活的时间源和从氚化的L-谷氨酸α-氯甲基酮进入谷氨酸脱氢酶中的掺入放射性的时间课程是双相的。结果被解释为表明“负合作社”相互作用参与赖氨酸-126的反应性。从累积证据来看,认为酶的第一个亚基参加催化剂,这是最大的,最小的最小,对整体催化的贡献。强调,酶的六个亚基中的三个可能具有牛谷氨酸脱氢酶总活性的多达80%。

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