» Articles » PMID: 15135037

Amino Acid Biogenesis, Evolution of the Genetic Code and Aminoacyl-tRNA Synthetases

Overview
Journal J Theor Biol
Publisher Elsevier
Specialty Biology
Date 2004 May 12
PMID 15135037
Citations 22
Authors
Affiliations
Soon will be listed here.
Abstract

The aminoacyl-tRNA synthetases (aaRSs) ensure the fidelity of the translation of the genetic code, covalently attaching appropriate amino acids to the corresponding nucleic acid adaptor molecules-tRNA. The fundamental role of aminoacylation reaction catalysed by aaRSs implies that representatives of the family are thought to be among the earliest proteins to appear. Based on sequence analysis and catalytic domain structure, aaRSs have been partitioned into two classes of 10 enzymes each. However, based on the structural and sequence data only, it will not be easily understood that the present partitioning is not governed by chance. Our findings suggest that organization of amino acid biosynthetic pathways and clustering of aaRSs into different classes are intimately related to one another. A plausible explanation for such a relationship is dictated by early link between aaRSs and amino acids biosynthetic proteins. The aaRSs catalytic cores are highly relevant to the ancient metabolic reactions, namely, amino acids and cofactors biosynthesis. In particular we show that class II aaRSs mostly associated with the primordial amino acids, while class I aaRSs are usually related to amino acids evolved lately. Reasoning from this we propose a possible chronology of genetic code evolution.

Citing Articles

WITHDRAWN: Structural Enzymology, Phylogenetics, Differentiation, and Symbolic Reflexivity at the Dawn of Biology.

Carter C, Carter Jr C, Tang G, Patra S, Betts L, Dieckhaus H bioRxiv. 2025; .

PMID: 39763899 PMC: 11702779. DOI: 10.1101/2024.12.17.628912.


Profiling of MicroRNAs and Their Targets in Roots and Shoots Reveals a Potential MiRNA-Mediated Interaction Network in Response to Phosphate Deficiency in the Forestry Tree .

Zhang J, Lin Y, Wu F, Zhang Y, Cheng L, Huang M Front Genet. 2021; 12:552454.

PMID: 33584823 PMC: 7876418. DOI: 10.3389/fgene.2021.552454.


The structural basis of the genetic code: amino acid recognition by aminoacyl-tRNA synthetases.

Kaiser F, Krautwurst S, Salentin S, Haupt V, Leberecht C, Bittrich S Sci Rep. 2020; 10(1):12647.

PMID: 32724042 PMC: 7387524. DOI: 10.1038/s41598-020-69100-0.


Correlation between equi-partition of aminoacyl-tRNA synthetases and amino-acid biosynthesis pathways.

Takenaka A, Moras D Nucleic Acids Res. 2020; 48(6):3277-3285.

PMID: 31965182 PMC: 7102985. DOI: 10.1093/nar/gkaa013.


Origin of the Genetic Code Is Found at the Transition between a Thioester World of Peptides and the Phosphoester World of Polynucleotides.

Hartman H, Smith T Life (Basel). 2019; 9(3).

PMID: 31443422 PMC: 6789786. DOI: 10.3390/life9030069.