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Catalog Number Size Price
LS-G131429-50 50 µg $291 
LS-G131429-250 250 µg $494 
LS-G131429-2 2 mg $2,575 
LS-G131429-4 4 mg $4,345 
TNFSF15 / TL1A / VEGI Protein - The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
TNFSF15 / TL1A / VEGI Protein
TNFSF15 / TL1A / VEGI Protein - The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
TNFSF15 / TL1A / VEGI Protein
1 of 2
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Human TNFSF15 / TL1A / VEGI Protein (Recombinant) - LS-G131429

Human TNFSF15 / TL1A / VEGI Protein (Recombinant) - LS-G131429

Description:
TNFSF15 / TL1A / VEGI Protein LS-G131429 is a Recombinant Human TNFSF15 / TL1A / VEGI produced in E. coli. It is biologically active and is low in endotoxin; Less than 1.0 EU/µg protein (determined by LAL method). For Research Use Only
Price
Catalog Number
$291
LS-G131429-50
Toll Free North America
206-374-1102
For Research Use Only

Overview

Description:
TNFSF15 / TL1A / VEGI Protein LS-G131429 is a Recombinant Human TNFSF15 / TL1A / VEGI produced in E. coli. It is biologically active and is low in endotoxin; Less than 1.0 EU/µg protein (determined by LAL method). For Research Use Only

Specifications

Type
Recombinant Protein
Target
TNFSF15 / TL1A / VEGI
Synonyms
TNFSF15 | TL1 | TL1A | TNF ligand-related molecule 1 | TNF superfamily ligand TL1A | VEGI192A | VEGI
Species
Human
Modifications
Unmodified
Conjugations
Unconjugated
AA Sequence
QLRAQGEASVQFQALKGQEFAPSHQQVYAPLRADGDKPRAHLTVVRQTPTQHFKNQFPAL
Expression System
E. coli
Source Species
Escherichia coli
Bio-Activity
The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
Endotoxin
Less than 1.0 EU/µg protein (determined by LAL method).
Presentation
Lyophilized from sterile Tris, salt
Reconstitution
Reconstitute in sterile distilled water to 0.1 mg/ml.
Storage
The lyophilized protein is stable for up to 1 year at -70°C. Upon reconstitution, this cytokine can be stored in working aliquots at 2°C to 8°C for 1 month, or at -20°C for 6 months, with a carrier protein without detectable loss of activity. Avoid freeze/thaw cycles.
Restrictions
For research use only. Intended for use by laboratory professionals.
Guarantee
This protein carries the LSBio 100% Guarantee.
LSBio Guarantee
About TNFSF15 / TL1A / VEGI
O95150 NM_005118 NP_005109.2

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Enzyme-Linked Immunosorbent Assay

TNFSF15 / TL1A / VEGI Protein - The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.

Sodium Dodecyl Sulfate - Polyacrylamide Gel Electrophoresis

TNFSF15 / TL1A / VEGI Protein

Enzyme-Linked Immunosorbent Assay

TNFSF15 / TL1A / VEGI Protein - The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.

Sodium Dodecyl Sulfate - Polyacrylamide Gel Electrophoresis

TNFSF15 / TL1A / VEGI Protein

Enzyme-Linked Immunosorbent Assay

TNFSF15 / TL1A / VEGI Protein - The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.

Sodium Dodecyl Sulfate - Polyacrylamide Gel Electrophoresis

TNFSF15 / TL1A / VEGI Protein

Enzyme-Linked Immunosorbent Assay

TNFSF15 / TL1A / VEGI Protein - The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.
The ED(50) was determined by the dose-dependent proliferation of Jurkat cells and was found to be <0.5ng/mL.

Sodium Dodecyl Sulfate - Polyacrylamide Gel Electrophoresis

TNFSF15 / TL1A / VEGI Protein

Request SDS/MSDS

To request an SDS/MSDS form for this product, please contact our Technical Support department at:

Technical.Support@LSBio.com

Requested From: United States
Date Requested: 4/26/2024