Human Tissue Factor (CD142) Protein

Este producto es parte de F3 - coagulation factor III, tissue factor
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481€ (20 µg)

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935106861
info@markelab.com
name
Human Tissue Factor (CD142) Protein
category
Proteins and Peptides
provider
Abbexa
reference
abx694186
tested applications
SDS-PAGE

Description

Human Tissue Factor (F3) Protein is a recombinant Human protein expressed in HEK293 cells.

Documents del producto

Instrucciones
Data sheet
Descargar

Product specifications

Category
Proteins and Peptides
Host
HEK293 cells
Origin
Human
Observed MW
Molecular Weight: Calculated MW: 27.5 kDa  Observed MW (SDS-PAGE): 40 kDa
Sequence Fragment: Met1-Glu251
Tag: C-terminal His tag
Expression
Recombinant
Purity
>95% (SDS-PAGE)
Size 1
20 µg
Size 2
100 µg
Form
Lyophilized Reconstitute in sterile H2O. Do not vortex.
Tested Applications
SDS-PAGE
Buffer
Prior to lyophilization: PBS, pH 7.4, containing 5% - 8% Trehalose, Mannitol and 0.01% Tween-80.
Availability
Shipped within 5-15 working days.
Storage
Store lyophilized between -20 °C and -80 °C.
Dry Ice
No
UniProt ID
P13726
Gene ID
2152
OMIM
13439
Alias
TF,TFA,CD142,Coagulation factor III,Thromboplastin
Background
Protein F3
Status
RUO
Note
This product is for research use only.   Not for human consumption, cosmetic, therapeutic or diagnostic use.

Descripción

Coagulation Factor III, also known as Tissue Factor (F3), is a critical glycoprotein in the initiation of the extrinsic pathway of the coagulation cascade. It acts as a receptor and cofactor for Factor VIIa, forming a complex that activates Factor X, which in turn leads to thrombin generation and clot formation. Tissue Factor is highly expressed in subendothelial tissues and is exposed upon vascular injury, where it serves as the primary trigger for hemostasis. Beyond its role in coagulation, F3 also participates in various signaling pathways, influencing inflammation, angiogenesis, and cancer progression through its interaction with protease-activated receptors (PARs). Dysregulation of Tissue Factor expression is associated with pathological conditions such as thrombosis, atherosclerosis, and malignancies. The study of F3 and its interactions, including its structure and binding properties, is crucial for developing targeted anticoagulant therapies and understanding its role in disease mechanisms. Its activity is often analyzed using advanced biochemical assays to elucidate its functions in both normal and pathological states.

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