期刊
CHEMISTRY & BIOLOGY
卷 18, 期 10, 页码 1221-1229出版社
CELL PRESS
DOI: 10.1016/j.chembiol.2011.08.008
关键词
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资金
- Israel Science Foundation [710262]
- Kimmelman Center for Biomolecular Structure and Assembly at Weiz-mann Institute of Science
- Russian Foundation of Basic Research [10-04-01082]
- Siberian Branch of RAS [13]
- On Foundation doctoral research fellowship
Aminoacyl-tRNA synthetases exert control over the accuracy of translation by selective pairing the correct amino acids with their cognate tRNAs, and proofreading the misacylated products. Here we show that three existing, structurally different phenylalanyl-tRNA synthetases-human mitochondrial (HsmtPheRS), human cytoplasmic (HsctPheRS), and eubacterial from Thermus thermophilus (TtPheRS), catalyze mischarging of tRNA(Phe) with an oxidized analog of tyrosine-L-dopa. The lowest level of L-dopa discrimination over the cognate amino acid, exhibited by HsmtPheRS, is comparable to that of tyrosyl-tRNA synthetase. HsmtPheRS and TtPheRS complexes with L-dopa revealed in the active sites an electron density shaping this ligand. HsctPheRS and TtPheRS possessing editing activity are capable of hydrolyzing the exogenous L-dopa-tRNA(Phe) as efficiently as Tyr-tRNA(Phe). However, editing activity of PheRS does not guarantee reduction of the aminoacylation error rate to escape misincorporation of L-dopa into polypeptide chains.
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