Hemmings B A, Sims A P
Eur J Biochem. 1977 Oct 17;80(1):143-51. doi: 10.1111/j.1432-1033.1977.tb11866.x.
An earlier observation from this laboratory (J. Gen. Microbiol. 64, 423--427) that NAD-dependent glutamate dehydrogenase activity is modulated by rapid inactivation has been extended to show that this mechanism is completely reversible. Changes in properties of the enzyme accompany inactivation and two different forms active (a) and inactive (b) of the enzyme with distinctive properties have been isolated. Incubation of the inactive enzyme with magnesium in vitro produced a rapid increase of activity; this was accompanied by a change in the properties of the enzyme to those of the a form. This control mechanism of enzyme interconversion appears widespread among yeasts. Its probable role in modulating glutamate synthesis and degration is discussed.
该实验室早期的一项观察结果(《普通微生物学杂志》64卷,423 - 427页)表明,NAD依赖型谷氨酸脱氢酶的活性受快速失活调节,现已进一步证明该机制是完全可逆的。酶失活时其性质会发生变化,并且已分离出具有不同特性的两种不同形式的酶,即活性形式(a)和无活性形式(b)。在体外将无活性的酶与镁一起温育会使活性迅速增加;同时酶的性质也会转变成a形式的性质。这种酶相互转化的控制机制似乎在酵母中广泛存在。文中讨论了其在调节谷氨酸合成与降解中可能发挥的作用。