4.1 Article

A new step in kinetic proofreading due to misacylated-tRNA during ribosomal peptide bond formation

Journal

NUCLEOSIDES NUCLEOTIDES & NUCLEIC ACIDS
Volume 40, Issue 6, Pages 635-646

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15257770.2021.1923742

Keywords

ONIOM; QM; MM; DFT; aminoacyl-tRNA; ribosome; protein synthesis

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The translational accuracy in protein synthesis is contributed to by several mechanisms in the ribosome, generally called kinetic proofreading. In addition to kinetic proofreading, the study shows the importance of aminoacyl-tRNA binding energy in ensuring fidelity of protein synthesis. The wrong addition of amino acids can lead to errors in the polypeptide chain.
The translational accuracy in protein synthesis is contributed to by several mechanisms in the ribosome, generally called kinetic proofreading. This process in the ribosome inhibits the non-cognate codon-anticodon interaction. However, it is not sufficient for fidelity of protein synthesis since a wrong amino acid can easily be added to the growing polypeptide chain if a tRNA while cognate to the mRNA, carries a non-cognate amino acid. Therefore, additional to the kinetic proofreading, there must be some hitherto unknown characteristic in misacylated-tRNAs to stop the process of protein synthesis if such misacylated-tRNA is accommodated in the ribosomal A-site. In order to understand this characteristic, we have performed computational quantum chemistry analysis on five different tRNA molecules, each one attached to five different amino acids with one being cognate to the tRNA and the other four non-cognate. This study shows the importance of aminoacyl-tRNA binding energy in ensuring fidelity of protein synthesis.

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