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PSAP

Anti-PSAP Products
- Human Anti-PSAP Antibody, mRNA (AGTO-L072S-mRNA)
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- Species Reactivity: Human
- Rabbit Anti-PSAP Recombinant Antibody (clone CBP266) (MOB-281YJL)
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- Species Reactivity: Mouse
- Type: Rabbit IgG
- Application: ELISA
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- Species Reactivity: Human
- Application: IHC-P, WB
- Mouse Anti-PSAP Recombinant Antibody (clone 4D5F4) (VS3-XY1311)
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- Type: Mouse IgG2b
- Application: IHC, ICC
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- Derivation: Mouse
- Species Reactivity: Human
- Type: Mouse IgG1
- Application: WB, ELISA
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- Species Reactivity: Human
- Type: Fab
- Application: ELISA
- TX14A-Sap immunotoxin (AGTO-L072S)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Functional assay
- Anti-PSAP Immunohistochemistry Kit (VS-0325-XY1770)
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- Species Reactivity: Human, Mouse, Rat
- Target: PSAP
- Application: IHC
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- Derivation: Phage display library screening
- Species Reactivity: Human
- Type: IgG
- Application: WB, IHC-P
- Mouse Anti-PSAP Recombinant Antibody (clone 3A5H7) (VS7-0425-WR698)
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- Species Reactivity: Human
- Type: Mouse IgG1
- Application: WB, IHC
- Mouse Anti-PSAP Recombinant Antibody (clone 3B4A8) (VS7-0425-WR697)
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- Species Reactivity: Human
- Type: Mouse IgG1
- Application: WB, IHC, ICC, FC
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- Antibody Host: Mouse
- Antibody Reactivity: Human
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For Research Use Only. Not For Clinical Use.
The lysosomal degradation of sphingolipids takes place by the sequential action of specific hydrolases. Some of these enzymes require specific low-molecular mass, non-enzymic proteins: the sphingolipids activator proteins (coproteins).
Saposin-A and saposin-C stimulate the hydrolysis of glucosylceramide by beta-glucosylceramidase (EC 3.2.1.45) and galactosylceramide by beta-galactosylceramidase (EC 3.2.1.46). Saposin-C apparently acts by combining with the enzyme and acidic lipid to form an activated complex, rather than by solubilizing the substrate.
Saposin-B stimulates the hydrolysis of galacto-cerebroside sulfate by arylsulfatase A (EC 3.1.6.8), GM1 gangliosides by beta-galactosidase (EC 3.2.1.23) and globotriaosylceramide by alpha-galactosidase A (EC 3.2.1.22). Saposin-B forms a solubilizing complex with the substrates of the sphingolipid hydrolases.
Saposin-D is a specific sphingomyelin phosphodiesterase activator (EC 3.1.4.12).
Saposin-A and saposin-C stimulate the hydrolysis of glucosylceramide by beta-glucosylceramidase (EC 3.2.1.45) and galactosylceramide by beta-galactosylceramidase (EC 3.2.1.46). Saposin-C apparently acts by combining with the enzyme and acidic lipid to form an activated complex, rather than by solubilizing the substrate.
Saposin-B stimulates the hydrolysis of galacto-cerebroside sulfate by arylsulfatase A (EC 3.1.6.8), GM1 gangliosides by beta-galactosidase (EC 3.2.1.23) and globotriaosylceramide by alpha-galactosidase A (EC 3.2.1.22). Saposin-B forms a solubilizing complex with the substrates of the sphingolipid hydrolases.
Saposin-D is a specific sphingomyelin phosphodiesterase activator (EC 3.1.4.12).