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Literature summary for 3.1.6.1 extracted from

  • Cregut, M.; Piutti, S.; Slezack-Deschaumes, S.; Benizri, E.
    Compartmentalization and regulation of arylsulfatase activities in Streptomyces sp., Microbacterium sp. and Rhodococcus sp. soil isolates in response to inorganic sulfate limitation (2013), Microbiol. Res., 168, 12-21.
    View publication on PubMed

Localization

Localization Comment Organism GeneOntology No. Textmining
intracellular 32% of arylsulfatase acivity is intracellular Streptomyces sp. 5622
-
membrane 68% of arylsulfatase acivity is membrane-associated Streptomyces sp. 16020
-
membrane 99% of arylsulfatase activity is membrane-associated Microbacterium sp. 16020
-
membrane 99% of arylsulfatase activity is membrane-associated Rhodococcus sp. 16020
-

Organism

Organism UniProt Comment Textmining
Microbacterium sp. J9QXV9 soil isolate
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Microbacterium sp. 3(2012) J9QXV9 soil isolate
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Rhodococcus sp. J9QWA6 soil isolate
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Rhodococcus sp. 2(2012) J9QWA6 soil isolate
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Streptomyces sp. J9QRU6 soil isolate
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Streptomyces sp. 1(2012) J9QRU6 soil isolate
-

Substrates and Products (Substrate)

Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
4-nitrocatechol sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Streptomyces sp. 4-nitrocatechol + sulfate
-
?
4-nitrocatechol sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Microbacterium sp. 4-nitrocatechol + sulfate
-
?
4-nitrocatechol sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Rhodococcus sp. 4-nitrocatechol + sulfate
-
?
4-nitrocatechol sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Microbacterium sp. 3(2012) 4-nitrocatechol + sulfate
-
?
4-nitrocatechol sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Streptomyces sp. 1(2012) 4-nitrocatechol + sulfate
-
?
4-nitrocatechol sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Rhodococcus sp. 2(2012) 4-nitrocatechol + sulfate
-
?
4-nitrophenyl sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Streptomyces sp. 4-nitrophenol + sulfate
-
?
4-nitrophenyl sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Microbacterium sp. 4-nitrophenol + sulfate
-
?
4-nitrophenyl sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Rhodococcus sp. 4-nitrophenol + sulfate
-
?
4-nitrophenyl sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Microbacterium sp. 3(2012) 4-nitrophenol + sulfate
-
?
4-nitrophenyl sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Streptomyces sp. 1(2012) 4-nitrophenol + sulfate
-
?
4-nitrophenyl sulfate + H2O the 4-nitrocatechol sulfate substrate is hydrolyzed to a greater extent than the 4-nitrophenyl sulfate substrate Rhodococcus sp. 2(2012) 4-nitrophenol + sulfate
-
?

Expression

Organism Comment Expression
Streptomyces sp. no enzymic activity is measured when microorganisms are present in a medium supplemented with inorganic sulfate as sole sulfur source down
Microbacterium sp. no enzymic activity is measured when microorganisms are present in a medium supplemented with inorganic sulfate as sole sulfur source down
Rhodococcus sp. no enzymic activity is measured when microorganisms are present in a medium supplemented with inorganic sulfate as sole sulfur source down
Streptomyces sp. enzymic activity is detected when microorganisms are grown in sulfate-limiting conditions up
Microbacterium sp. enzymic activity is detected when microorganisms are grown in sulfate-limiting conditions up
Rhodococcus sp. enzymic activity is detected when microorganisms are grown in sulfate-limiting conditions up