Sprinzl M, Siboska G E, Pedersen J A
Nucleic Acids Res. 1978 Mar;5(3):861-77. doi: 10.1093/nar/5.3.861.
The 2-thioketo function of tRNAPhe-C-s2C-A in which the penultimate cytidine residue is replaced by 20thiocytidine can serve as a site of specific attachment of spin label. By alkylation of tRNAPhe-C-s2C-A with iodoacetamide or its spin label derivatives tRNAPhe-C-(acm)s2C-A or tRNAPheC-(SL)s2C-A are formed. The enzymatic phenylalanylation of these tRNAsPhe revealed that the 2-position of the penultimate cytidine can be modified without impairing this enzymatic reaction but there exists a sterical limitation for the subsituent on this position beyond which the tRNAPhe:phenylalanyl-tRNA synthetase recognition is not possible. Both Phe-tRNAPhe-C-(acm)s2C-A as well as Phe-tRNAPhe-C(SL)s2C-A form ternary complexes with EF-Tu.GTP. The part of the 3'-terminus of tRNAPhe where the additional substituents are attached is therefore not involved in the interaction with this elongation factor. This could be also demonstrated by ESR measurements of spin labelled tRNAsPhe. The correlation times, tauc, for tRNAPhe-C-(SL)s2C-A, Phe-tRNAPhe-C-(SL)s2C-A and Phe-tRNAPhe-C-(SL)s2C-A.EF-Tu:GTP are essentially identical indicating that the structure of the 3'-end of tRNAPhe is not influenced significantly by aminoacylation or ternary complex formation.
在tRNAPhe-C-s2C-A中,倒数第二个胞苷残基被2 -硫代胞苷取代后形成的2-硫酮功能可作为自旋标记特异性附着的位点。通过用碘乙酰胺或其自旋标记衍生物对tRNAPhe-C-s2C-A进行烷基化反应,可形成tRNAPhe-C-(acm)s2C-A或tRNAPhe-C-(SL)s2C-A。对这些tRNAPhe进行酶促苯丙氨酰化反应表明,倒数第二个胞苷的2位可以被修饰而不影响这种酶促反应,但该位置上的取代基存在空间限制,超过此限制,tRNAPhe与苯丙氨酰-tRNA合成酶就无法识别。Phe-tRNAPhe-C-(acm)s2C-A以及Phe-tRNAPhe-C-(SL)s2C-A都能与EF-Tu.GTP形成三元复合物。因此,tRNAPhe的3'-末端上连接有额外取代基的部分不参与与该延伸因子的相互作用。这一点也可以通过对自旋标记的tRNAPhe进行电子自旋共振(ESR)测量来证明。tRNAPhe-C-(SL)s2C-A、Phe-tRNAPhe-C-(SL)s2C-A以及Phe-tRNAPhe-C-(SL)s2C-A.EF-Tu:GTP的相关时间tauc基本相同,这表明tRNAPhe的3'-末端结构不会因氨酰化或三元复合物的形成而受到显著影响。