Roy Hervé, Becker Hubert Dominique, Mazauric Marie-Hélène, Kern Daniel
UPR 9002, Architecture et Réactivité de l'ARN, Institut de Biologie Moléculaire et Cellulaire du CNRS, 15, Rue René Descartes and Université Louis Pasteur, F-67084 Strasbourg Cédex, France.
Nucleic Acids Res. 2007;35(10):3420-30. doi: 10.1093/nar/gkm211. Epub 2007 May 3.
In most prokaryotes Asn-tRNA(Asn) and Gln-tRNA(Gln) are formed by amidation of aspartate and glutamate mischarged onto tRNA(Asn) and tRNA(Gln), respectively. Coexistence in the organism of mischarged Asp-tRNA(Asn) and Glu-tRNA(Gln) and the homologous Asn-tRNA(Asn) and Gln-tRNA(Gln) does not, however, lead to erroneous incorporation of Asp and Glu into proteins, since EF-Tu discriminates the misacylated tRNAs from the correctly charged ones. This property contrasts with the canonical function of EF-Tu, which is to non-specifically bind the homologous aa-tRNAs, as well as heterologous species formed in vitro by aminoacylation of non-cognate tRNAs. In Thermus thermophilus that forms the Asp-tRNA(Asn) intermediate by the indirect pathway of tRNA asparaginylation, EF-Tu must discriminate the mischarged aminoacyl-tRNAs (aa-tRNA). We show that two base pairs in the tRNA T-arm and a single residue in the amino acid binding pocket of EF-Tu promote discrimination of Asp-tRNA(Asn) from Asn-tRNA(Asn) and Asp-tRNA(Asp) by the protein. Our analysis suggests that these structural elements might also contribute to rejection of other mischarged aa-tRNAs formed in vivo that are not involved in peptide elongation. Additionally, these structural features might be involved in maintaining a delicate balance of weak and strong binding affinities between EF-Tu and the amino acid and tRNA moieties of other elongator aa-tRNAs.
在大多数原核生物中,天冬酰胺 - tRNA(Asn)和谷氨酰胺 - tRNA(Gln)分别是由错误负载到tRNA(Asn)和tRNA(Gln)上的天冬氨酸和谷氨酸的酰胺化作用形成的。然而,错误负载的天冬氨酸 - tRNA(Asn)和谷氨酸 - tRNA(Gln)与同源的天冬酰胺 - tRNA(Asn)和谷氨酰胺 - tRNA(Gln)在生物体中共存,并不会导致天冬氨酸和谷氨酸错误掺入蛋白质中,因为EF - Tu能够区分错误酰化的tRNA和正确负载的tRNA。这一特性与EF - Tu的经典功能形成对比,其经典功能是无特异性地结合同源的氨酰 - tRNA,以及体外由非同源tRNA氨基酰化形成的异源种类。在嗜热栖热菌中,通过tRNA天冬酰胺化的间接途径形成天冬氨酸 - tRNA(Asn)中间体,EF - Tu必须区分错误负载的氨酰 - tRNA(aa - tRNA)。我们发现,tRNA T - 臂中的两个碱基对以及EF - Tu氨基酸结合口袋中的一个残基促进了该蛋白质对天冬氨酸 - tRNA(Asn)与天冬酰胺 - tRNA(Asn)以及天冬氨酸 - tRNA(Asp)的区分。我们的分析表明,这些结构元件可能也有助于排斥体内形成的、不参与肽链延伸的其他错误负载的aa - tRNA。此外,这些结构特征可能参与维持EF - Tu与其他延伸因子aa - tRNA的氨基酸和tRNA部分之间弱结合亲和力和强结合亲和力的微妙平衡。