Vaidyanathan V V, Sastry P S, Ramasarma T
Department of Biochemistry, Indian Institute of Science, Bangalore.
Biochim Biophys Acta. 1993 Nov 10;1203(1):36-44. doi: 10.1016/0167-4838(93)90033-n.
Incubation of glyceraldehyde-3-phosphate dehydrogenase (GAPD) with sodium nitroprusside (SNP) decreased its activity in concentration- and time-dependent fashion in the presence of a thiol compound, with DTT being more effective than GSH. Both forward and backward reactions were effected. Coinciding with this, HgCl2-sensitive labelling of the protein by [32P]NAD+ also increased, indicating the stimulation of ADP-ribosylation. Treatment with SNP of GAPD samples from rabbit muscle, sheep brain and yeast inactivated the dehydrogenase activity of the three, but only the mammalian proteins showed ADP-ribosylation activity. The SNP-modified protein of rabbit muscle GAPD, freed from the reagent by Sephadex filtration showed a concentration-dependent restoration of the dehydrogenase activity on preincubation with DTT and GSH. Such thiol-treated preparations also gave increased ADP-ribosylation activity with DTT, and to a lesser extent with GSH. The SNP-modified protein was unable to catalyze this activity with the native yeast enzyme and native and heat-inactivated muscle enzyme. It was possible to generate the ADP-ribosylation activity in muscle GAPD, by an NO-independent mechanism, on dialysis in Tris buffer under aerobic conditions, and on incubating with NADPH, but not NADH, in muscle and brain, but not yeast, enzymes. The results suggest that the inverse relationship of the dehydrogenase and ADP-ribosylation activities is coincidental but not correlated.
在存在硫醇化合物的情况下,甘油醛-3-磷酸脱氢酶(GAPD)与硝普钠(SNP)温育会使其活性以浓度和时间依赖性方式降低,其中二硫苏糖醇(DTT)比谷胱甘肽(GSH)更有效。正向和逆向反应均受影响。与此一致的是,[32P]NAD +对该蛋白质的汞离子(HgCl2)敏感标记也增加,表明ADP-核糖基化受到刺激。用SNP处理兔肌肉、羊脑和酵母中的GAPD样品会使这三种样品的脱氢酶活性失活,但只有哺乳动物的蛋白质表现出ADP-核糖基化活性。通过葡聚糖凝胶过滤从试剂中分离出的兔肌肉GAPD的SNP修饰蛋白,在与DTT和GSH预温育时,其脱氢酶活性呈现浓度依赖性恢复。这种经硫醇处理的制剂在使用DTT时ADP-核糖基化活性也增加,而使用GSH时增加程度较小。SNP修饰的蛋白无法与天然酵母酶以及天然和热失活的肌肉酶一起催化这种活性。在有氧条件下于Tris缓冲液中透析,以及在肌肉和脑(而非酵母)的酶中与NADPH(而非NADH)温育时,有可能通过不依赖一氧化氮(NO)的机制在肌肉GAPD中产生ADP-核糖基化活性。结果表明,脱氢酶活性与ADP-核糖基化活性之间的反比关系是巧合的,而非相关的。