Henriksen O, Robinson E A, Maxwell E S
J Biol Chem. 1975 Jan 25;250(2):725-30.
The effects of ribosomes and Mg-2plus on the binding of GDP and GTP to elongation factor 2 (EF-2) have been studied by an improved filter-binding assay. Both ribosomes and Mg-2plus strongly inhibit the binding of GDP but have apparently no effect on the GTP binding to the enzyme. An apparent stimulation by ribosomes of GTP binding to EF-2 is time-dependent and parallels a concomitant increase of the GDP concentration in the incubation mixture. Based on these results and evidence obtained by other investigators it is suggested that changes in the GTP:GDP ratio associated with the elongation and termination reactions of protein synthesis cause conformational changes of the respective factors which consequently will modulate the binding and dissociation of the enzymes from ribosomes. Further evidence of the role GDP may play as a modulator of protein synthesis might possibly be provided by studies of the GTP-GDP transphosphorylase activity which is present as an impurity in highly purified preparations of EF-2 as well as in ribosome preparations. It is demonstrated that relatively high concentrations of GDP in the presence of GTP completely block the ribosome-dependent GTPase activity of EF-2. Instead, the transphosphorylase enzyme(s) catalyzes an exchange reaction between GTP and GDP during which GDP remains bound to EF-2 and the relative concentrations of the two nucleotides do not change.
通过改进的滤膜结合试验研究了核糖体和Mg²⁺对GDP和GTP与延伸因子2(EF-2)结合的影响。核糖体和Mg²⁺均强烈抑制GDP的结合,但对GTP与该酶的结合显然没有影响。核糖体对GTP与EF-2结合的明显刺激是时间依赖性的,并且与孵育混合物中GDP浓度的相应增加平行。基于这些结果以及其他研究者获得的证据,表明与蛋白质合成的延伸和终止反应相关的GTP:GDP比值的变化会导致各自因子的构象变化,从而调节酶与核糖体的结合和解离。对GTP-GDP转磷酸酶活性的研究可能会进一步证明GDP作为蛋白质合成调节剂可能发挥的作用,该活性在高度纯化的EF-2制剂以及核糖体制剂中作为杂质存在。结果表明,在GTP存在下相对高浓度的GDP完全阻断了EF-2的核糖体依赖性GTP酶活性。相反,转磷酸酶催化GTP和GDP之间的交换反应,在此期间GDP仍与EF-2结合,并且两种核苷酸的相对浓度不变。