2014•ASM Press eBooksRequires access

Aminoacyl-tRNA Synthetases: Occurrence, Structure, and Function

Thierry Meinnel, Yves Méchulam, Sylvain Blanquet

Open publisher page 51 citations

Abstract

Translation of the genetic message into proteins implies the precise correspondence between the 64 base triplets and the 20 canonical amino acids. In this process, the tRNAs play a central role by providing the nascent polypeptide with the amino acids by which they are esterified, in response to codons on the mRNA. The pairing of mRNA codon to tRNA anticodon is independent of the nature of the amino acid esterified to the tRNA. Therefore, the accuracy of the tRNA aminoacylation reaction, ensured by the aminoacyl-tRNA synthetases (aaRS), is of first importance in all living cells, since it will govern, to a large extent, the fidelity of the translation process. Much work has been done to understand how aaRS achieve high accuracy of tRNA aminoacylation while maintaining a sufficiently high rate of catalysis, generally in the order of several turnovers per second.. Since the early description of aaRS, most of the studies have focused on the kinetic mechanisms of action of the aaRS. More recently, with the availability of the three-dimensional structure of several tRNAs and synthetases and the possibility of generating variants of these macromolecules, a static picture of their specific interaction at the atomic level has emerged. Two main functions are carried out by an aaRS: the activation of the amino acid and the recognition of the tRNA molecule. In addition, association between protomers must be ensured. The present knowledge indicates that each of these functions is distributed along the aaRS polypeptide through the formation of specialized domains.

About this research paper

What this paper is about

Translation of the genetic message into proteins implies the precise correspondence between the 64 base triplets and the 20 canonical amino acids. In this process, the tRNAs play a central role by providing the nascent polypeptide with the amino acids by which they are esterified, in response to codons on the mRNA. The pairing of mRNA codon to tRNA anticodon is independent of the nature of the amino acid esterified to the tRNA. Therefore, the accuracy of the tRNA aminoacylation reaction, ensured by the aminoacyl-tRNA synthetases (aaRS), is of first importance in all living cells, since it will govern, to a large extent, the fidelity of the translation process. Much work has been done to understand how aaRS achieve high accuracy of tRNA aminoacylation while maintaining a sufficiently high rate of catalysis, generally in the order of several turnovers per second.. Since the early description of aaRS, most of the studies have focused on the kinetic mechanisms of action of the aaRS. More recently, with the availability of the three-dimensional structure of several tRNAs and synthetases and the possibility of generating variants of these macromolecules, a static picture of their specific interaction at the atomic level has emerged. Two main functions are carried out by an aaRS: the activation of the amino acid and the recognition of the tRNA molecule. In addition, association between protomers must be ensured. The present knowledge indicates that each of these functions is distributed along the aaRS polypeptide through the formation of specialized domains.

Why it matters

OpenAlex reports 51 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Translation of the genetic message into proteins implies the precise correspondence between the 64 base triplets and the 20 canonical amino acids. In this process, the tRNAs play a central role by providing the nascent polypeptide with the amino acids by which they are esterified, in response to codons on the mRNA. The pairing of mRNA codon to tRNA anticodon is independent of the nature of the amino acid esterified to the tRNA. Therefore, the accuracy of the tRNA aminoacylation reaction, ensured by the aminoacyl-tRNA synthetases (aaRS), is of first importance in all living cells, since it will govern, to a large extent, the fidelity of the translation process. Much work has been done to understand how aaRS achieve high accuracy of tRNA aminoacylation while maintaining a sufficiently high rate of catalysis, generally in the order of several turnovers per second.. Since the early description of aaRS, most of the studies have focused on the kinetic mechanisms of action of the aaRS. More recently, with the availability of the three-dimensional structure of several tRNAs and synthetases and the possibility of generating variants of these macromolecules, a static picture of their specific interaction at the atomic level has emerged. Two main functions are carried out by an aaRS: the activation of the amino acid and the recognition of the tRNA molecule. In addition, association between protomers must be ensured. The present knowledge indicates that each of these functions is distributed along the aaRS polypeptide through the formation of specialized domains.

Key concepts: Aminoacylation, Transfer RNA, Aminoacyl tRNA synthetase, Amino acid, Translation (biology), Amino Acyl-tRNA Synthetases, Genetic code, Protein biosynthesis

Related papers

Back to paper searchBrowse research topicsOriginal source
Aminoacyl-tRNA Synthetases: Occurrence, Structure, and Function — Research Paper | ScholarLens