Cow Putative 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline decarboxylase (PRHOXNB) ELISA Kit
| Product Name | Cow Putative 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline decarboxylase (PRHOXNB) ELISA Kit |
|---|---|
| Description | PRHOXNB belongs to the OHCU decarboxylase family. Recombinant TTL from Arabidopsis thaliana catalyzes two enzymatic reactions leading to the stereoselective formation of S-allantoin, hydrolysis of hydroxyisourate through a C-terminal Urah domain, and decarboxylation of 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline through an N-terminal Urad domain. TTL originated in green algae through a Urad-Urah fusion, which entrapped an N-terminal PTS2 between the two domains. The presence of this gene in all Viridiplantae indicates that S-allantoin biosynthesis has general significance in plant nitrogen metabolism, while conservation of alternative splicing suggests that this mechanism has general implications in the regulation of the ureide pathway in flowering plants. This assay has high sensitivity and excellent specificity for detection of Bovine PRHOXNB. No significant cross-reactivity or interference between Bovine PRHOXNB and analogues was observed. |
| Synonyms | URAD, Parahox Cluster Neighbor |
| Method | Sandwich ELISA |
| Detection Range | Request Information |
| Sensitivity | Request Information |
| Reactivity | Bovine |
| Sample Types | Serum, Plasma, Other biological fluids. |
| Background | PRHOXNB belongs to the OHCU decarboxylase family. Recombinant TTL from Arabidopsis thaliana catalyzes two enzymatic reactions leading to the stereoselective formation of S-allantoin, hydrolysis of hydroxyisourate through a C-terminal Urah domain, and decarboxylation of 2-oxo-4-hydroxy-4-carboxy-5-ureidoimidazoline through an N-terminal Urad domain. TTL originated in green algae through a Urad-Urah fusion, which entrapped an N-terminal PTS2 between the two domains. The presence of this gene in all Viridiplantae indicates that S-allantoin biosynthesis has general significance in plant nitrogen metabolism, while conservation of alternative splicing suggests that this mechanism has general implications in the regulation of the ureide pathway in flowering plants. |
| Supplier | Abebio |
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