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首页> 外文期刊>The biochemical journal >Ox liver glutamate dehydrogenase. The use of chemical modification to study the relationship between catalytic sites for different amino acid substrates and the question of kinetic non-equivalence of the subunits
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Ox liver glutamate dehydrogenase. The use of chemical modification to study the relationship between catalytic sites for different amino acid substrates and the question of kinetic non-equivalence of the subunits

机译:牛肝谷氨酸脱氢酶。使用化学修饰研究不同氨基酸底物催化位点与亚基动力学非对等问题之间的关系

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摘要

pThe effect of pyridoxal 5′-phosphate on the activity of ox liver glutamate dehydrogenase towards different amino acid substrates was investigated. Both alanine and glutamate activities decreased steadily in the presence of pyridoxal 5′-phosphate. The alanine/glutamate activity ratio increased as a function of inactivation by pyridoxal 5′-phosphate, indicating that glutamate activity is lost more rapidly than alanine activity. A mixture of NADH, GTP and 2-oxoglutarate completely protected the alanine and glutamate activities against inactivation by pyridoxal 5′-phosphate. The activity of glutamate dehydrogenase towards glutamate and leucine decreased steadily in a constant ratio in the presence of pyridoxal 5′-phosphate. The effect of leucine on the alanine and glutamate activities as a function of inactivation by pyridoxal 5′-phosphate was studied. The results are interpreted to suggest that the subunits of glutamate dehydrogenase hexamer are kinetically non-equivalent with regard to activity towards the two monocarboxylic amino acids as well as glutamate, and that all three substrates share the same active centre. However, leucine is also able to bind at a separate regulatory site./p
机译:>研究了吡ido醛5'-磷酸对牛肝谷氨酸脱氢酶对不同氨基酸底物活性的影响。在吡ido醛5'-磷酸的存在下,丙氨酸和谷氨酸的活性均稳定下降。丙氨酸/谷氨酸活性比随着吡ido醛5'-磷酸的失活而增加,表明谷氨酸活性比丙氨酸活性丧失得更快。 NADH,GTP和2-氧戊二酸酯的混合物完全保护了丙氨酸和谷氨酸的活性,使其免受吡ido醛5'-磷酸的灭活作用。在存在吡ido醛5′-磷酸的情况下,谷氨酸脱氢酶对谷氨酸和亮氨酸的活性以恒定的比例稳定降低。研究了亮氨酸对丙氨酸和谷氨酸活性的影响,并通过吡pyr醛5'-磷酸的失活作用进行了研究。解释结果表明,就对两个单羧酸氨基酸以及谷氨酸的活性而言,谷氨酸脱氢酶六聚体的亚基在动力学上是不等价的,并且所有三个底物共享相同的活性中心。但是,亮氨酸也能够在单独的调控位点结合。

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