Products
Loading...
-
-
- Antigen Species: Human
- Type: Membrane Protein
- Expression System: HEK293 expression system
- Application: ELISA; SPR Binding Assays; Phage Display Screening; Immunity; Functional Assays
Inquiry
Datasheet
-
-
- Antigen Species: Human
- Type: Membrane Protein
- Expression System: in vitro E.coli expression system
Inquiry
Datasheet
-
-
- Antigen Species: Human
- Type: Membrane Protein
- Expression System: Insect Expression System
- Application: ELISA; Antibody Production; Antibody Discovery; Antibody Characterization; Binding Assays; Functional Assays
Inquiry
Datasheet
-
-
- Antigen Species: Human
- Type: Membrane Protein
- Expression System: Insect Expression System
- Application: ELISA; Antibody Production; Antibody Discovery; Antibody Characterization; Binding Assays; Functional Assays
Inquiry
Datasheet
-
-
- Antigen Species: Human
- Type: Membrane Protein
- Expression System: HEK293
Inquiry
Datasheet
-
-
- Antigen Species: Human
- Type: Membrane Protein
- Expression System: in vitro wheat germ expression system
- Application: Enzyme-linked Immunoabsorbent Assay, Western Blot (Recombinant protein), Antibody Production, Protein Array
Inquiry
Datasheet
All listed services and products are For Research Use Only. Do Not use in any diagnostic or therapeutic applications.
This protein shows high-affinity receptor for 12-(S)-hydroxy-5,8,10,14-eicosatetraenoic acid (12-S-HETE), with much lower affinities for other HETE isomers. 12-S-HETE-binding leads to activation of ERK1/2 (MAPK3/MAPK1), MEK, and NF-kappa-B pathways leading to cell growth. It plays a crucial role for proliferation, survival and macropinocytosis of KRAS-dependent cancer cells by mediating the translocation of KRAS from the endoplasmic reticulum to the plasma membrane (PM) and its association with the PM. It contributes to enhanced immune responses by inducing dendrite protrusion of small intestinal CX3CR1+ phagocytes for the uptake of luminal antigens. Acts also as a key receptor for 12-(S)-HETE-mediated liver ischemia reperfusion injury