Ringer D, Chládek S
Biochemistry. 1976 Jun 29;15(13):2759-65. doi: 10.1021/bi00658a008.
The mechanism of enzymatic binding of AAtRNA to the acceptor site Escherichia coli ribosomes has been studied using the following aminoacyl oligonucleotides as models of the 3' terminus of AA-tRNA: C-A-Phe, C-A-(2'-Phe)H, and C-A(2'H)Phe. T-psi-C-Gp was used as a model of loop IV of tRNA. The EF-T dependent binding of Phe-tRNA to ribosomes (in the presence of either GTP or GMPPCP) and the GTPase activity associated with EF-T dependent binding of the Phe-tRNA were inhibited by C-A-Phe,C-A(2'Phe)H, and C-A(2'H)Phe. These aminoacyl oligonucleotides inhibit both the formation of ternary complex EF-Tu-GTP-AA-tRNA and the interaction of this complex with the ribosomal A site. The uncoupled EF-Tu dependent GTPase (in the absence of AA-tRNA) was also inhibited by C-A-Phe, C-A(2'Phe)H, and C-A(2'H)Phe, while nonenzymatic binding of Phe-tRNA to the ribosomal A site was inhibited by C-A-Phe and C-A(2'-Phe)H, but not by C-A(2'H)Phe. The tetranucleotide T-psi-C-Gp inhibited both enzyme binding of Phe-tRNA and EF-T dependent GTP hydrolysis. However, inhibition of the latter reaction occured at a lower concentration of T-psi-C-Gp suggesting a specific role of T-psi-C-Gp loop of AA-tRNA in the GTPase reaction. The role of the 2' and 3' isomers of AA-tRNA during enzymatic binding to ribosomes is discussed and it is suggested that 2' leads to 3' transacylation in AA-tRNA is a step which follows GTP hydrolysis but precedes peptide bond formation.
利用以下氨酰基寡核苷酸作为氨酰 - tRNA 3' 末端的模型,研究了氨酰 - tRNA与大肠杆菌核糖体受体位点的酶促结合机制:C - A - Phe、C - A - (2'-Phe)H和C - A(2'H)Phe。T - ψ - C - Gp用作tRNA环IV的模型。C - A - Phe、C - A(2'Phe)H和C - A(2'H)Phe抑制了苯丙氨酰 - tRNA与核糖体的EF - T依赖性结合(在存在GTP或GMPPCP的情况下)以及与苯丙氨酰 - tRNA的EF - T依赖性结合相关的GTP酶活性。这些氨酰基寡核苷酸既抑制三元复合物EF - Tu - GTP - 氨酰 - tRNA的形成,也抑制该复合物与核糖体A位点的相互作用。未偶联的EF - Tu依赖性GTP酶(在不存在氨酰 - tRNA的情况下)也受到C - A - Phe、C - A(2'Phe)H和C - A(2'H)Phe的抑制,而苯丙氨酰 - tRNA与核糖体A位点的非酶促结合受到C - A - Phe和C - A(2'-Phe)H的抑制,但不受C - A(2'H)Phe的抑制。四核苷酸T - ψ - C - Gp既抑制苯丙氨酰 - tRNA的酶促结合,也抑制EF - T依赖性GTP水解。然而,后一反应的抑制在较低浓度的T - ψ - C - Gp时发生,这表明氨酰 - tRNA的T - ψ - C - Gp环在GTP酶反应中具有特定作用。讨论了氨酰 - tRNA的2' 和3' 异构体在与核糖体酶促结合过程中的作用,并提出氨酰 - tRNA中2' 向3' 的转酰化是一个在GTP水解之后但在肽键形成之前的步骤。