6.1.1.16: cysteine-tRNA ligase
This is an abbreviated version!
For detailed information about cysteine-tRNA ligase, go to the full flat file.
Word Map on EC 6.1.1.16
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6.1.1.16
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synthetases
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aminoacyl-trnas
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aminoacylation
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cys-trnacys
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prolyl-trna
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prors
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seprs
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cysteinyl-trnacys
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asnrs
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atp-ppi
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ilers
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valrs
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o-phosphoseryl-trna
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maripaludis
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aarss
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sep-trna:cys-trna
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sepcyss
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o-phosphoserine
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drug development
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molecular biology
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medicine
- 6.1.1.16
- synthetases
- aminoacyl-trnas
- aminoacylation
-
cys-trnacys
-
prolyl-trna
- prors
- seprs
-
cysteinyl-trnacys
- asnrs
-
atp-ppi
- ilers
- valrs
-
o-phosphoseryl-trna
- maripaludis
-
aarss
-
sep-trna:cys-trna
- sepcyss
- o-phosphoserine
- drug development
- molecular biology
- medicine
Reaction
Synonyms
CarS, CARS1, CARS2, class I CysRS, class I cysteinyl-tRNA synthetase, CRS, CysRS, cysS, Cysteine translase, Cysteine--tRNA ligase, cysteine-specific aminoacyl-tRNA synthetase, cysteinyl tRNA synthetase, Cysteinyl-transfer ribonucleate synthetase, Cysteinyl-transfer RNA synthetase, Cysteinyl-tRNA synthetase, MSMEG_6074, Synthetase, cysteinyl-transfer ribonucleate
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Application on EC 6.1.1.16 - cysteine-tRNA ligase
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drug development
medicine
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in order to evaluate genetic associations between candidate genes involved in oxidative stress and multiple system atrophy (MSA) 119 Japanese patients with MSA and 123 controls are examined and single-nucleotide polymorphisms are genotyped. Results revealed genetic associations of cysteinyl-tRNA synthetase, solute carrier family 1A4, sequestosome 1, and eukaryotic translation initiation factor 4E-binding protein 1 with MSA
molecular biology
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Mycoplasmas hyopneumoniae are collected from bronchial alveolar lavage samples of infected pigs 28 days postinfection and compared to broth-grown cells using microarrays. During lung infection, the analysis indicates that 79 genes are differentially expressed. Of the down-regulated genes, 28 of 46 (61%) lacked an assigned function, in comparison to 21 of 33 (63%) of up-regulated genes. Cysteinyl-tRNA synthetase is down-regulated in vivo
aminoacyl-tRNA synthetases are attractive targets for the discovery of antibacterial agents
drug development
Mycolicibacterium smegmatis mc2155 / ATCC 700084
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aminoacyl-tRNA synthetases are attractive targets for the discovery of antibacterial agents
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