Curran J F, Poole E S, Tate W P, Gross B L
Department of Biology, Wake Forest University, Winston-Salem, NC 27109, USA.
Nucleic Acids Res. 1995 Oct 25;23(20):4104-8. doi: 10.1093/nar/23.20.4104.
Codon context can affect translational efficiency by several molecular mechanisms. The base stacking interactions between a codon-anticodon complex and the neighboring nucleotide immediately 3' can facilitate translation by amber suppressors and the tRNA structure is also known to modulate the sensitivity to context. In this study the relative rates of aminoacyl-tRNA selection were measured at four sense codons (UGG, CUC, UUC and UCA), in all four 3' nucleotide contexts, through direct competition with a programmed frameshift at a site derived from the release factor 2 gene. Two codons (UGG and UUC) are read by tRNAs with small variable regions and their rates of aminoacyl-tRNA selection correlated with the potential base stacking strength of the 3' neighboring nucleotide. The other two codons (CUC and UCA) are read by tRNAs with large variable regions and the rate of selection of the aminoacyl-tRNAs in these cases varied little among the four contexts. Re-examination of published data on amber suppression also revealed an inverse correlation between context sensitivity and the size of the variable region. Collectively the data suggest that a large variable loop in a tRNA decreases the influence of the 3' context on tRNA selection, probably by strengthening tRNA-ribosomal interactions.
密码子上下文可通过多种分子机制影响翻译效率。密码子 - 反密码子复合物与紧邻的3'端核苷酸之间的碱基堆积相互作用可促进琥珀抑制子的翻译,并且已知tRNA结构也可调节对上下文的敏感性。在本研究中,通过与源自释放因子2基因位点的程序性移码直接竞争,在所有四种3'核苷酸上下文中,测量了四个有义密码子(UGG、CUC、UUC和UCA)处氨酰 - tRNA选择的相对速率。两个密码子(UGG和UUC)由具有小可变区的tRNA读取,它们的氨酰 - tRNA选择速率与3'相邻核苷酸的潜在碱基堆积强度相关。另外两个密码子(CUC和UCA)由具有大可变区的tRNA读取,在这两种情况下,氨酰 - tRNA的选择速率在四种上下文中变化不大。对已发表的关于琥珀抑制的数据重新审视也揭示了上下文敏感性与可变区大小之间的负相关。总体而言,数据表明tRNA中的大可变环可能通过加强tRNA - 核糖体相互作用来降低3'上下文对tRNA选择的影响。