The G3-U70-independent tRNA recognition by human mitochondrial alanyl-tRNA synthetase.

Nucleic Acids Res

State Key Laboratory of Molecular Biology, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, 320 Yue Yang Road, Shanghai 200031, China.

Published: April 2019

AI Article Synopsis

  • Human mitochondrial Alanyl-tRNA synthetase (hmtAlaRS) recognizes mitochondrial tRNAAla in a unique way, independent of the typical G3-U70 wobble base pair found in other organisms.
  • The study reveals that hmtAlaRS is a monomer and relies on various elements in the acceptor stem for its tRNA recognition.
  • Additionally, it identifies the R592W mutation linked to cardiomyopathy and highlights hmtAlaRS's misactivation of Gly and its role in the editing process, providing insights into translational quality control.

Article Abstract

Alanyl-tRNA synthetases (AlaRSs) from three domains of life predominantly rely on a single wobble base pair, G3-U70, of tRNAAla as a major determinant. However, this base pair is divergent in human mitochondrial tRNAAla, but instead with a translocated G5-U68. How human mitochondrial AlaRS (hmtAlaRS) recognizes tRNAAla, in particular, in the acceptor stem region, remains unknown. In the present study, we found that hmtAlaRS is a monomer and recognizes mitochondrial tRNAAla in a G3-U70-independent manner, requiring several elements in the acceptor stem. In addition, we found that hmtAlaRS misactivates noncognate Gly and catalyzes strong transfer RNA (tRNA)-independent pre-transfer editing for Gly. A completely conserved residue outside of the editing active site, Arg663, likely functions as a tRNA translocation determinant to facilitate tRNA entry into the editing domain during editing. Finally, we investigated the effects of the severe infantile-onset cardiomyopathy-associated R592W mutation of hmtAlaRS on the canonical enzymatic activities of hmtAlaRS. Overall, our results provide fundamental information about tRNA recognition and deepen our understanding of translational quality control mechanisms by hmtAlaRS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6451123PMC
http://dx.doi.org/10.1093/nar/gkz078DOI Listing

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