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volume 174 issue 3 pages 291-303

Mechanism of tRNA recognition by heterotetrameric glycyl-tRNA synthetase from lactic acid bacteria

Publication typeJournal Article
Publication date2023-06-01
scimago Q2
wos Q4
SJR0.785
CiteScore4.6
Impact factor1.7
ISSN0021924X, 17562651
PubMed ID:  37261968
Biochemistry
Molecular Biology
General Medicine
Abstract

Glycyl-tRNA synthetases (GlyRSs) have different oligomeric structures depending on the organisms. While a dimeric α2 GlyRS species is present in archaea, eukaryotes and some eubacteria, a heterotetrameric α2β2 GlyRS species is found in most eubacteria. Here, we present the crystal structure of heterotetrameric α2β2 GlyRS, consisting of the full-length α and β subunits, from Lactobacillus plantarum (LpGlyRS), gram-positive lactic bacteria. The α2β2LpGlyRS adopts the same X-shaped structure as the recently reported Escherichia coli α2β2 GlyRS. A tRNA docking model onto LpGlyRS suggests that the α and β subunits of LpGlyRS together recognize the L-shaped tRNA structure. The α and β subunits of LpGlyRS together interact with the 3′-end and the acceptor region of tRNAGly, and the C-terminal domain of the β subunit interacts with the anticodon region of tRNAGly. The biochemical analysis using tRNA variants showed that in addition to the previously defined determinants G1C72 and C2G71 base pairs, C35, C36 and U73 in eubacterial tRNAGly, the identification of bases at positions 4 and 69 in tRNAGly is required for efficient glycylation by LpGlyRS. In this case, the combination of a purine base at Position 4 and a pyrimidine base at Position 69 in tRNAGly is preferred.

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Nagato Y. et al. Mechanism of tRNA recognition by heterotetrameric glycyl-tRNA synthetase from lactic acid bacteria // Journal of Biochemistry. 2023. Vol. 174. No. 3. pp. 291-303.
GOST all authors (up to 50) Copy
Nagato Y., Yamashita S., Ohashi A., Furukawa H., Takai K., Tomita K., Tomikawa C. Mechanism of tRNA recognition by heterotetrameric glycyl-tRNA synthetase from lactic acid bacteria // Journal of Biochemistry. 2023. Vol. 174. No. 3. pp. 291-303.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1093/jb/mvad043
UR - https://doi.org/10.1093/jb/mvad043
TI - Mechanism of tRNA recognition by heterotetrameric glycyl-tRNA synthetase from lactic acid bacteria
T2 - Journal of Biochemistry
AU - Nagato, Yasuha
AU - Yamashita, Seisuke
AU - Ohashi, Azusa
AU - Furukawa, Haruyuki
AU - Takai, Kazuyuki
AU - Tomita, Kozo
AU - Tomikawa, Chie
PY - 2023
DA - 2023/06/01
PB - Oxford University Press
SP - 291-303
IS - 3
VL - 174
PMID - 37261968
SN - 0021-924X
SN - 1756-2651
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2023_Nagato,
author = {Yasuha Nagato and Seisuke Yamashita and Azusa Ohashi and Haruyuki Furukawa and Kazuyuki Takai and Kozo Tomita and Chie Tomikawa},
title = {Mechanism of tRNA recognition by heterotetrameric glycyl-tRNA synthetase from lactic acid bacteria},
journal = {Journal of Biochemistry},
year = {2023},
volume = {174},
publisher = {Oxford University Press},
month = {jun},
url = {https://doi.org/10.1093/jb/mvad043},
number = {3},
pages = {291--303},
doi = {10.1093/jb/mvad043}
}
MLA
Cite this
MLA Copy
Nagato, Yasuha, et al. “Mechanism of tRNA recognition by heterotetrameric glycyl-tRNA synthetase from lactic acid bacteria.” Journal of Biochemistry, vol. 174, no. 3, Jun. 2023, pp. 291-303. https://doi.org/10.1093/jb/mvad043.