Drabkin H J, RajBhandary U L
Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Mol Cell Biol. 1998 Sep;18(9):5140-7. doi: 10.1128/MCB.18.9.5140.
Protein synthesis is initiated universally with the amino acid methionine. In Escherichia coli, studies with anticodon sequence mutants of the initiator methionine tRNA have shown that protein synthesis can be initiated with several other amino acids. In eukaryotic systems, however, a yeast initiator tRNA aminoacylated with isoleucine was found to be inactive in initiation in mammalian cell extracts. This finding raised the question of whether methionine is the only amino acid capable of initiation of protein synthesis in eukaryotes. In this work, we studied the activities, in initiation, of four different anticodon sequence mutants of human initiator tRNA in mammalian COS1 cells, using reporter genes carrying mutations in the initiation codon that are complementary to the tRNA anticodons. The mutant tRNAs used are aminoacylated with glutamine, methionine, and valine. Our results show that in the presence of the corresponding mutant initiator tRNAs, AGG and GUC can initiate protein synthesis in COS1 cells with methionine and valine, respectively. CAG initiates protein synthesis with glutamine but extremely poorly, whereas UAG could not be used to initiate protein synthesis with glutamine. We discuss the potential applications of the mutant initiator tRNA-dependent initiation of protein synthesis with codons other than AUG for studying the many interesting aspects of protein synthesis initiation in mammalian cells.
蛋白质合成普遍以甲硫氨酸作为起始氨基酸。在大肠杆菌中,对起始甲硫氨酸tRNA反密码子序列突变体的研究表明,蛋白质合成也可以由其他几种氨基酸起始。然而,在真核生物系统中,发现用异亮氨酸氨酰化的酵母起始tRNA在哺乳动物细胞提取物的起始过程中无活性。这一发现引发了一个问题,即甲硫氨酸是否是真核生物中唯一能够起始蛋白质合成的氨基酸。在这项研究中,我们利用携带与tRNA反密码子互补的起始密码子突变的报告基因,研究了人起始tRNA的四种不同反密码子序列突变体在哺乳动物COS1细胞起始过程中的活性。所使用的突变tRNA用谷氨酰胺、甲硫氨酸和缬氨酸进行氨酰化。我们的结果表明,在相应的突变起始tRNA存在的情况下,AGG和GUC可以分别在COS1细胞中以甲硫氨酸和缬氨酸起始蛋白质合成。CAG可以以谷氨酰胺起始蛋白质合成,但效率极低,而UAG不能用于以谷氨酰胺起始蛋白质合成。我们讨论了利用除AUG以外的密码子通过突变起始tRNA依赖的蛋白质合成起始来研究哺乳动物细胞中蛋白质合成起始的许多有趣方面的潜在应用。