Fasiolo F, Remy P, Holler E
Biochemistry. 1981 Jun 23;20(13):3851-6. doi: 10.1021/bi00516a028.
Native and modified phenylalanine transfer ribonucleic acid (tRNAPhe) can modulate phenylalanine-dependent adenosine triphosphate--inorganic [32P]pyrophosphate (ATP--[32P]PPi) exchange activity via inhibition of adenylate synthesis. Inhibition is visualized if concentrations of L-phenylalanine, ATP, and pyrophosphate are subsaturating. In the proposed mechanism, tRNAPhe is a noncompetitive inhibitor at conditions where only one of the two active sites per molecule of enzyme is occupied by L-phenylalanine, ATP, and pyrophosphate. At saturating concentrations of these reactants, both active sites are occupied and, according to the model, inhibition is eliminated. Occupation by these reactants is assumed to follow homotropic negative cooperativity. The type of effects depends on modification of tRNAPhe. Native tRNAPhe, tRNA2'-dAPhe, and tRNAoxi-redPhe are inhibitors, tRNAPhepCpC has no effect, and tRNAoxPhe is an activator. Kinetics of activation by tRNAoxPhe are slow, following the time course of Schiff base formation and subsequent reduction by added cyanoborohydride. Besides showing that a putative enzyme amino group is nonessential for substrate binding and adenylate synthesis, this result may suggest that an enzyme amino group could interact with the 3'-terminal adenyl group of cognate tRNA. In the case of asymmetrical occupation of the enzyme active sites by all of the small reactants ATP, L-phenylalanine, and pyrophosphate, the interaction with the amino group might trigger the observed noncompetitive inhibition of the pyrophosphate exchange by tRNAPhe.
天然和修饰的苯丙氨酸转移核糖核酸(tRNAPhe)可通过抑制腺苷酸合成来调节苯丙氨酸依赖性三磷酸腺苷 - 无机[32P]焦磷酸(ATP - [32P]PPi)交换活性。如果L - 苯丙氨酸、ATP和焦磷酸的浓度处于亚饱和状态,抑制作用就会显现出来。在所提出的机制中,tRNAPhe在每分子酶的两个活性位点中只有一个被L - 苯丙氨酸、ATP和焦磷酸占据的条件下是一种非竞争性抑制剂。在这些反应物达到饱和浓度时,两个活性位点都被占据,根据该模型,抑制作用消除。假定这些反应物的占据遵循同促负协同性。效应的类型取决于tRNAPhe的修饰。天然tRNAPhe、tRNA2'-dAPhe和tRNAoxi-redPhe是抑制剂,tRNAPhepCpC没有作用,而tRNAoxPhe是激活剂。tRNAoxPhe的激活动力学较慢,遵循席夫碱形成以及随后添加氰基硼氢化钠还原的时间进程。除了表明假定的酶氨基对于底物结合和腺苷酸合成并非必需外,这一结果可能还表明酶氨基可能与同源tRNA的3'-末端腺苷基团相互作用。在所有小反应物ATP、L - 苯丙氨酸和焦磷酸对酶活性位点进行不对称占据的情况下,与氨基的相互作用可能会引发观察到的tRNAPhe对焦磷酸交换的非竞争性抑制。