Mouse Angiopoietin-1 Receptor / TIE2 (TEK) Protein

Este producto es parte de TEK - TEK receptor tyrosine kinase
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208€ (10 µg)

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935106861
info@markelab.com
name
Mouse Angiopoietin-1 Receptor / TIE2 (TEK) Protein
category
Proteins and Peptides
provider
Abbexa
reference
abx692742
tested applications
SDS-PAGE

Description

Mouse Tyrosine-Protein is a recombinant protein from Mouse produced in Human Cells. Recombinant Mouse Developmental Tyrosine Kinase/Tyrosine Protein Kinase Receptor TYRO3 is produced by our Mammalian expression system and the target gene encoding Ala31-Ser418 is expressed with a mFc tag at the C-terminus.

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Product specifications

CategoryProteins and Peptides
Immunogen TargetAngiopoietin-1 Receptor / TIE2 (TEK)
HostHuman
OriginMouse
Observed MWMolecular Weight: 68.2 kDa Sequence Fragment: Ala31-Ser418 Tag: C-terminal mFc tag
ExpressionRecombinant
Purity> 95% (SDS-PAGE)
Size 110 µg
Size 250 µg
FormLyophilized
Tested ApplicationsSDS-PAGE
BufferPBS, pH7.4.
AvailabilityShipped within 5-15 working days.
StorageStore at < -20°C.
Dry IceNo
UniProt IDP55144
AliasAngiopoietin-1 receptor,Endothelial tyrosine kinase,TIE2,VMCM,GLC3E,TIE-2,VMCM1,CD202B,Tyrosine-protein kinase receptor TEK,Tunica interna endothelial cell kinase
BackgroundProtein TEK
StatusRUO
NoteThis product is for research use only. Not for human consumption, cosmetic, therapeutic or diagnostic use.

Descripción

TEK, also known as TEK receptor tyrosine kinase (also termed Tie2 in some literature), is a receptor tyrosine kinase (RTK) with significant roles in vascular development, maintenance, and angiogenesis. Receptor tyrosine kinases are a class of cell surface receptors that, upon ligand binding, activate intracellular signaling cascades through phosphorylation. Specifically, the TEK/Tie2 receptor is primarily expressed in endothelial cells, which line blood vessels, as well as in certain subsets of hematopoietic cells. Its ligand, angiopoietin, specifically angiopoietins-1 and -2 (ANGPT1 and ANGPT2), modulates TEK signaling and plays essential roles in vessel stabilization, endothelial survival, and inflammatory responses. TEK signaling plays an essential role in regulating vascular quiescence and homeostasis. In developing and mature vasculature, TEK helps balance angiogenesis, where new blood vessels form from existing ones, with vascular stability and permeability. This function makes TEK a crucial player in several physiological and pathological processes, from wound healing to cancer and other angiogenesis-dependent diseases. Dysfunctional TEK signaling has been implicated in a range of vascular and inflammatory diseases, including tumor angiogenesis, diabetic retinopathy, and sepsis.

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