2.7.7.47: streptomycin 3''-adenylyltransferase
This is an abbreviated version!
For detailed information about streptomycin 3''-adenylyltransferase, go to the full flat file.
Word Map on EC 2.7.7.47
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2.7.7.47
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integrons
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medicine
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aminoglycoside-modifying
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blavim-2
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streptomycin-resistant
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dfra15
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diagnostics
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agriculture
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analysis
- 2.7.7.47
- integrons
- medicine
-
aminoglycoside-modifying
- blavim-2
-
streptomycin-resistant
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dfra15
- diagnostics
- agriculture
- analysis
Reaction
Synonyms
AAD (3''), aadA, AadA6, aminoglycoside (3'')(9) adenylyltransferase, aminoglycoside 3''-adenylyltransferase, aminoglycoside 3'-adenyltransferase, aminoglycoside adenyltransferase, aminoglycoside adenyltransferase A, aminoglycoside adenyltransferase type A, aminoglycoside adenylyltransferase, ANT(3'')-II, ANT(3'')-Ii/AAC(6')-IId, SMATase, str, streptomycin adenylate synthetase, streptomycin adenyltransferase, streptomycin adenylylase, streptomycin adenylyltransferase, streptomycin-spectinomycin adenylyltransferase
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Application
Application on EC 2.7.7.47 - streptomycin 3''-adenylyltransferase
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agriculture
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aminoglycoside 3''-adenylyltransferase confers resistance to streptomycin and spectinomycin
analysis
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the developed multiplex PCR assay is useful in verifying the GM status of a sample irrespective of the crop and GM trait
diagnostics
medicine
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studying the antimicrobial susceptibility phenotypes and the genetic basis of resistance are important epidemiological tools to determine potential sources of infections
diagnostics
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studying the antimicrobial susceptibility phenotypes and the genetic basis of resistance are important epidemiological tools to determine potential sources of infections
streptomycin continues to be an important drug for synergistic therapy of serious enterococcal infections
medicine
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common community-acquired human drug-resistant infections are caused by bacterial strains that harbor mobile drug resistance determinants of identical sequences that are found in diverse bacterial species from varied animal sources worldwide
medicine
common community-acquired human drug-resistant infections are caused by bacterial strains that harbor mobile drug resistance determinants of identical sequences that are found in diverse bacterial species from varied animal sources worldwide
medicine
Klebsiella pneumoniae strains carrying the enzyme gene and a dihydrofolate reductase gene confering resistance to trimethoprim were found in eight out of 44 different diabetic foot ulcer patients