ZFIN ID: ZDB-EXP-210112-3 |
Experiment Conditions Description: chemical treatment by environment: EC 3.1.4.* (phosphoric diester hydrolase) inhibitor, chemical treatment by environment: sphingosine 1-phosphate
chemical treatment by environment: EC 3.1.4.* (phosphoric diester hydrolase) inhibitor |
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Name: | chemical treatment by environment |
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Synonyms: | |
Definition: | Chemical treatment condition in which the chemical is introduced through the environment. For zebrafish this is the tank water. |
Ontology: | Zebrafish Environment Condition Ontology [ZECO:0000238] |
Name: | EC 3.1.4.* (phosphoric diester hydrolase) inhibitor |
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Synonyms: | EC 3.1.4.* (phosphoric diester hydrolase) inhibitors, phosphodiesterase inhibitor, phosphodiesterase inhibitors, phosphoric diester hydrolase (EC 3.1.4.*) inhibitor, phosphoric diester hydrolase (EC 3.1.4.*) inhibitors, phosphoric diester hydrolase inhibitor, phosphoric diester hydrolase inhibitors |
Definition: | An EC 3.1.* (ester hydrolase) inhibitor that interferes with the action of a phosphoric diester hydrolase (EC 3.1.4.*). |
Ontology: | ChEBI [CHEBI:50218] ( EBI ) |
chemical treatment by environment: sphingosine 1-phosphate |
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Name: | chemical treatment by environment |
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Synonyms: | |
Definition: | Chemical treatment condition in which the chemical is introduced through the environment. For zebrafish this is the tank water. |
Ontology: | Zebrafish Environment Condition Ontology [ZECO:0000238] |
Name: | sphingosine 1-phosphate |
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Synonyms: | (2-amino-3-hydroxy-octadec-4-enoxy)phosphonic acid, (2S,3R,4E)-2-amino-3-hydroxyoctadec-4-en-1-yl dihydrogen phosphate, (2S,3R,4E)-2-amino-4-octadecene-1,3-diol 1-(dihydrogen phosphate), C18-Sphingosine 1-phosphate, D-erythro-sphingosine 1-phosphate, S1P, Sphing-4-enine 1-phosphate, Sphingosine 1-phosphate, Sphingosine 1-phosphic acid, sphingosine-1-phosphate |
Definition: | A phosphosphingolipid that consists of sphingosine having a phospho group attached at position 1 |
Ontology: | ChEBI [CHEBI:37550] ( EBI ) |
Publication: | Armistead et al., 2020 |
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