HGF Activator
Anti-HGF Activator Recombinant Antibody Products
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- Derivation: Human
- Species Reactivity: Human
- Type: IgG
- Application: Neut, WB, FuncS
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- Species Reactivity: Human
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- Species Reactivity: Human
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- Derivation: Human synthetic Fab library
- Species Reactivity: Human
- Type: Human IgG
- Application: ELISA, FuncS
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- Species Reactivity: Human
- Type: Humanized scFv
- Application: ELISA
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- Species Reactivity: Human
- Type: Humanized Fab
- Application: ELISA
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- Derivation: Human
- Species Reactivity: Human
- Type: IgG
- Application: WB, ELISA, Neut, FuncS
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- Derivation: Human
- Species Reactivity: Human
- Type: scFv
- Application: WB, ELISA, Neut, FuncS
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- Derivation: Human
- Species Reactivity: Human
- Type: Fab
- Application: WB, ELISA, Neut, FuncS
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- Type: Human IgG1
- Application: ELISA
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- Species Reactivity: Human
- Type: Human IgG
- Application: ELISA, Block
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- Derivation: Mouse
- Species Reactivity: Human
- Type: IgG
- Application: WB, ELISA, IHC, FuncS
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- Type: Human IgG1
- Application: ELISA, Inhib
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- Species Reactivity: Human
- Type: ADCC enhanced antibody
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- Derivation: Human
- Species Reactivity: Human
- Type: IgG
- Application: WB, ELISA, FuncS
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- Species Reactivity: Human
- Type: Humanized antibody
- Application: ELISA
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- Species Reactivity: Human
- Type: Human IgG
- Application: ELISA, Block
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- Species Reactivity: Human
- Type: Antibody
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- Derivation: Human
- Species Reactivity: Human
- Type: scFv
- Application: WB, ELISA, FuncS
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- Derivation: Human
- Species Reactivity: Human
- Type: Fab
- Application: WB, ELISA, FuncS
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- Type: Human Fab
- Application: ELISA, Inhib
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- Type: Human scFv
- Application: ELISA, Inhib
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- Derivation: Mouse
- Species Reactivity: Human
- Type: Fab
- Application: FC, WB, FuncS
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- Derivation: Mouse
- Species Reactivity: Human
- Type: scFv
- Application: ELISA, WB, IP, FuncS
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- Species Reactivity: Human
- Type: Human Fab
- Application: ELISA, Block
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- Species Reactivity: Human
- Type: Human Fab
- Application: ELISA, Block
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- Species Reactivity: Human
- Type: Human scFv
- Application: ELISA, Block
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- Species Reactivity: Human
- Type: Human scFv
- Application: ELISA, Block
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- Type: Human Fab
- Application: ELISA
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- Type: Human scFv
- Application: ELISA
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- Derivation: Human
- Species Reactivity: Human
- Type: Fab
- Application: WB, IP, FuncS
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- Derivation: Human
- Species Reactivity: Human
- Type: scFv
- Application: ELISA, IP, FuncS
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- Derivation: Human synthetic Fab library
- Species Reactivity: Human
- Type: Human scFv
- Application: ELISA, FuncS
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- Derivation: Human synthetic Fab library
- Species Reactivity: Human
- Type: Human Fab
- Application: ELISA, FuncS
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- Species Reactivity: Human
- Type: Rabbit IgG
- Application: ELISA
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For Research Use Only. Not For Clinical Use.
This gene encodes a member of the peptidase S1 protein family. The encoded protein is first synthesized as an inactive single-chain precursor before being activated to a heterodimeric form by endoproteolytic processing. It acts as serine protease that converts hepatocyte growth factor to the active form. Alternative splicing results in multiple transcript variants.
HGF activator (HGFA) is a serum-derived serine protease and belongs to the peptidase family S1.HGFA is responsible for the conversion of hepatocyte growth factor (HGF), from the inactive single-chain precursor to the active heterodimeric form, which is a potent mitogen, motogen, and morphogen for liver cells, epithelial cells, and endothelial cells. HGFA is synthesized and secreted by the liver and circulates in the plasma as an inactive single-chain zymogen in normal states. The zymogen is cleaved by thrombin or thermolysin through the endoproteolytic process and forms an active heterodimer linked by a disulfide bond. In turn, the active protease can be inhibited by HGFA inhibitors (HAIs) including HAI-1 and HAI-2. In addition, the HGFA zymogen acquires a strong affinity upon activation and thus may ensure the local action in tissue regeneration in liver, kidney and skin. It has been reported that activation of HGF is a critical limiting step in the HGF/SF-induced signaling pathway mediated by Met, and accordingly, aberrant expression of HGFA is implicated in tumorigenesis and progression.