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氨酰基转移核糖核酸与核糖体的酶促结合:氨酰基转移核糖核酸2'和3'异构体结合位点的研究

Enzymatic binding of aminoacyl transfer ribonucleic acid to ribosomes: the study of binding sites of 2' and 3' isomers of aminoacyl transfer ribonucleic acid.

作者信息

Ringer D, Chládek S

出版信息

Biochemistry. 1976 Jun 29;15(13):2759-65. doi: 10.1021/bi00658a008.

Abstract

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.

摘要

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。

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