AARS Online: a collaborative database on the structure, function, and evolution of the aminoacyl-tRNA synthetases

Author:

Douglas JordanORCID,Cui HaissiORCID,Perona John J.ORCID,Vargas-Rodriguez OscarORCID,Tyynismaa HennaORCID,Alvarez Carreño ClaudiaORCID,Ling JiqiangORCID,Ribas-de-Pouplana Lluís,Yang Xiang-LeiORCID,Ibba Michael,Becker HubertORCID,Fischer Frédéric,Sissler MarieORCID,Carter Charles W.ORCID,Wills Peter R.ORCID

Abstract

AbstractThe aminoacyl-tRNA synthetases (aaRS) are a large group of enzymes that implement the genetic code in all known biological systems. They attach amino acids to their cognate tRNAs, moonlight in various non-translational activities, and are linked to many genetic disorders. The aaRS have a subtle ontology characterized by structural and functional idiosyncrasies that vary from organism to organism, and protein to protein. Across the tree of life, the twenty-two coded amino acids are handled by sixteen evolutionary Families of Class I aaRS and twenty-one Families of Class II aaRS. We introduce AARS Online, an interactive Wikipedia-like tool curated by an international consortium of field experts. This platform systematizes existing knowledge about the aaRS by showcasing a taxonomically diverse selection of aaRS sequences and structures. Through its graphical user interface, AARS Online facilitates a seamless exploration between protein sequence and structure, providing a friendly introduction to the material for non-experts and a useful resource for experts. Curated multiple sequence alignments can be extracted for downstream analyses. Accessible atwww.aars.online, AARS Online is a free resource to delve into the world of the aaRS.

Publisher

Cold Spring Harbor Laboratory

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