Welcome to GenPrice! Check out our latest updates.

Shopping Cart (0)

Your cart is empty

Add some products to get started!

Human c-MET (Luc) HEK293 Reporter Cell

Hepatocyte growth factor receptor (HGFR) is also known as mesenchymal-epithelial transition factor (MET), c-Met, and is a glycosylated receptor tyrosine kinase that plays a central role in epithelial morphogenesis and cancer development. HGFR protein possesses tyrosine-kinase activity. The primary single chain precursor protein is post-translationally cleaved to produce the alpha and beta subunits, which are disulfide linked to form the mature receptor. HGFR is normally expressed by cells of epithelial origin, while expression of HGF is restricted to cells of mesenchymal origin. Upon HGF stimulation, HGFR induces several biological responses that collectively give rise to a program known as invasive growth. Abnormal HGFR activation in cancer correlates with poor prognosis, where aberrantly active HGFR triggers tumor growth, formation of new blood vessels (angiogenesis) that supply the tumor with nutrients, and cancer spread to other organs (metastasis) . HGFR is deregulated in many types of human malignancies, including cancers of kidney, liver, stomach, breast, and brain. Normally, only stem cells and progenitor cells express HGFR, However, cancer stem cells are thought to hijack the ability of normal stem cells to express HGFR, and thus become the cause of cancer persistence and spread to other sites in the body. Various mutations in the HGFR gene are associated with papillary renal carcinoma. HGFR mediates a complex program known as invasive growth. Activation of HGFR triggers mitogenesis, and morphogenesis.

Product Specifications

Background

Hepatocyte growth factor receptor (HGFR) is also known as mesenchymal-epithelial transition factor (MET), c-Met, and is a glycosylated receptor tyrosine kinase that plays a central role in epithelial morphogenesis and cancer development. HGFR protein possesses tyrosine-kinase activity. The primary single chain precursor protein is post-translationally cleaved to produce the alpha and beta subunits, which are disulfide linked to form the mature receptor. HGFR is normally expressed by cells of epithelial origin, while expression of HGF is restricted to cells of mesenchymal origin. Upon HGF stimulation, HGFR induces several biological responses that collectively give rise to a program known as invasive growth. Abnormal HGFR activation in cancer correlates with poor prognosis, where aberrantly active HGFR triggers tumor growth, formation of new blood vessels (angiogenesis) that supply the tumor with nutrients, and cancer spread to other organs (metastasis) . HGFR is deregulated in many types of human malignancies, including cancers of kidney, liver, stomach, breast, and brain. Normally, only stem cells and progenitor cells express HGFR, However, cancer stem cells are thought to hijack the ability of normal stem cells to express HGFR, and thus become the cause of cancer persistence and spread to other sites in the body. Various mutations in the HGFR gene are associated with papillary renal carcinoma. HGFR mediates a complex program known as invasive growth. Activation of HGFR triggers mitogenesis, and morphogenesis.

Host

HEK293

Origin Species

Human

Target

HGF R

Tag

Luc

Applications

• Screen for neutralizing antibodies blocking the stimulation of human HGF protein.

Format

Liquid

Shipping Conditions

Dry ice

Storage Conditions

Frozen in liquid nitrogen

Package Size

1Vial*2

Product Datasheet

Https://www.acrobiosystems.com/static/main/products/pdf/ds/CHEK-ATF144.pdf

Species

Human

Curated Selection

Explore Other Products

Discover premium biology products from our extensive collection of 20M+ items

CROC4 HDR Plasmid (h)
sc-411477-HDR 20 µg

CROC4 HDR Plasmid (h)

Ask
View Details
SOX8/SOX9/SOX17/SOX18 Antibody
A57673-100UL 100 µL

SOX8/SOX9/SOX17/SOX18 Antibody

Ask
View Details
resistin HDR Plasmid (m)
sc-425359-HDR 20 µg

resistin HDR Plasmid (m)

Ask
View Details
Slc25a24 Rat shRNA Plasmid (Locus ID 310791)
TL708418 1 Kit

Slc25a24 Rat shRNA Plasmid (Locus ID 310791)

Ask
View Details