Baksht E, de Groot N, Sprinzl M, Cramer F
Biochemistry. 1976 Aug 10;15(16):3639-46. doi: 10.1021/bi00661a035.
Phe-tRNAPhe species modified on the 3'-terminal ribose residue were investigated for their ability to participate in individual steps of the elongation cycle using eukaryotic ribosomes from reticulocytes. None of the Phe-tRNAs used, namely Phe-tRNAPhe-C-C-3'dA, Phe-tRNAPhe-C-C-3'-NH2A, and Phe-tRNAPhe-C-C-Aoxi-red, can function in the overall process. All modified Phe-tRNAPhe species can be bound nonenzymatically to ribosomes. Phe-tRNAPhe-C-C-3'NH2A exhibits exceptionally high binding at low Mg2+ concentration compared with Phe-tRNAPhe-C-C-A binding. Ac-Phe-tRNAPhe species prepared from the three modified tRNAs, when bound to the donor site, were devoid of donor activity. The enzymatic binding of both Phe-tRNAPhe-C-C-3'dA and Phe-tRNAPhe-C-C-3'NH2A is less efficient than that of Phe-tRNAPhe-C-C-A but these Phe-tRNAPhe species have acceptor activity. Phe-tRNAPhe-C-C--Aoxi-red is not a substrate for the EF-I promoted binding reaction and has no acceptor activity. The nonaminoacylated species, tRNAPhe-C-C-A, tRNAPhe-C-C-3'dA, and tRNAPhe-C-C-3'NH2A, bind to the ribosome to a larger extent than the corresponding aminoacylated tRNAs, both in the presence and in the absence of poly(U). Peptidyl-tRNAPhe-C-C-3'dA bound to the donor site cannot activate the acceptor site for EF-I promoted binding of Phe-tRNAPhe as does peptidyl-tRNAPhe-C-C-A. Further, it was observed that a correct codon-anticodon interaction influences the recognition of the 3' terminus of tRNA. Specificity of eukaryotic ribosomes for the 2'- and/or 3'-aminoacylated tRNA species is discussed and compared with the properties of Escherichia coli system.
利用来自网织红细胞的真核核糖体,研究了在3'-末端核糖残基上修饰的苯丙氨酰 - tRNAphe物种参与延伸循环各个步骤的能力。所使用的苯丙氨酰 - tRNAphe,即苯丙氨酰 - tRNAphe - C - C - 3'dA、苯丙氨酰 - tRNAphe - C - C - 3'-NH2A和苯丙氨酰 - tRNAphe - C - C - Aoxi - red,在整个过程中均无功能。所有修饰的苯丙氨酰 - tRNAphe物种均可非酶促地与核糖体结合。与苯丙氨酰 - tRNAphe - C - C - A结合相比,苯丙氨酰 - tRNAphe - C - C - 3'NH2A在低Mg2+浓度下表现出异常高的结合能力。由三种修饰的tRNA制备的乙酰化苯丙氨酰 - tRNAphe物种,当与供体位点结合时,缺乏供体活性。苯丙氨酰 - tRNAphe - C - C - 3'dA和苯丙氨酰 - tRNAphe - C - C - 3'NH2A的酶促结合效率低于苯丙氨酰 - tRNAphe - C - C - A,但这些苯丙氨酰 - tRNAphe物种具有受体活性。苯丙氨酰 - tRNAphe - C - C - Aoxi - red不是EF - I促进的结合反应的底物,也没有受体活性。在有和没有聚(U)的情况下,未氨酰化的物种,tRNAphe - C - C - A、tRNAphe - C - C - 3'dA和tRNAphe - C - C - 3'NH2A,比相应的氨酰化tRNA与核糖体的结合程度更大。与肽基 - tRNAphe - C - C - A一样,与供体位点结合的肽基 - tRNAphe - C - C - 3'dA不能激活EF - I促进的苯丙氨酰 - tRNAphe结合的受体位点。此外,观察到正确的密码子 - 反密码子相互作用会影响tRNA 3'末端的识别。讨论了真核核糖体对2'-和/或3'-氨酰化tRNA物种的特异性,并与大肠杆菌系统的特性进行了比较。