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西亚试剂:Human cytoplasmic ProX edits mischarged tRNAPro with amino

Human cytoplasmic ProX edits mischarged tRNAPro with amino acid but not tRNA specificity

Liang-Liang Ruan, Xiao-Long Zhou, Min Tan and En-Duo Wang

Aminoacyl-tRNA synthetases (aaRSs) are responsible for ensuring the fidelity of the genetic code translation by accurately linking a particular amino acid to its cognate tRNA isoacceptor. To ensure accuracy of protein biosynthesis, some aaRSs have evolved an editing process to remove mischarged tRNA. The hydrolysis of the mischarged tRNA usually occurs in an editing domain, which is inserted into or appended to the main body of the aaRS. In addition, autonomous, editing domain-homologous proteins can also trans-edit mischarged tRNA in concert or in compensating for the editing function of its corresponding aaRS. The freestanding ProX is a homologue of the editing domain of bacterial ProRS. In the present work, we cloned for the first time a gene encoding the human cytoplasmic ProX (HsProX) and purified the expressed recombinant protein. The catalytic specificity of HsProX for non-cognate amino acids and identity elements on tRNAPro for editing were also investigated. We found that HsProX could deacylate mischarged Ala-tRNAPro, but not Cys-HstRNAPro (UGG), and specifically targeted the Ala moiety of Ala-tRNAPro. The importance of the CCA76 end of the tRNA for deacylation activity and key amino acid residues in HsProX for its editing function were also identified.