
Thermo Fisher Scientific Human HVEM Fc Recombinant Protein, PeproTech
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Applications
Tested Dilution
Publications
Functional Assay (Functional)
Assay-dependent
Product Specifications
Species
Human
Expression System
Insect cells
Amino acid sequence
LPSCKEDEYP VGSECCPKCS PGYRVKEACG ELTGTVCEPC PPGTYIAHLN GLSKCLQCQM CDPAMGLRAS RNCSRTENAV CGCSPGHFCI VQDGDHCAAC RAYATSSPGQ RVQKGGTESQ DTLCQNCPPG TFSPNGTLEE CQHQTKRSCD KTHTCPPCPA PELLGGPSVF LFPPKPKDTL MISRTPEVTC VVVDVSHEDP EVKFNWYVDG VEVHNAKTKP REEQYNSTYR VVSVLTVLHQ DWLNGKEYKC KVSNKALPAP IEKTISKAKG QPREPQVYTL PPSRDELTKN QVSLTCLVKG FYPSDIAVEW ESNGQPENNY KTTPPVLDSD GSFFLYSKLT VDKSRWQQGN VFSCSVMHEA LHNHYTQKSL SLSPGK
Tag
Fc-tag
Molecular weight
41.4 kDa
Class
Recombinant
Type
Protein
Purity
≥ 98% by SDS-PAGE gel and HPLC analyses.
Endotoxin concentration
<1 EU/µg
Activity
Determined by its ability to neutralize 0.25 ng/ml of hTNFbeta induced cytotoxicity on murine L929 cells. The expected ED50 for this effect is 1.3-1.9 ug/ml of HVEM-Fc.
Conjugate
Unconjugated Unconjugated Unconjugated
Form
Lyophilized
Purification
purified
Contains
no preservative
Storage conditions
-20°C
Product Specific Information
310-27-1MG will be provided as 10 x 100 µg (310-27-100UG).
310-27-200UG will be provided as 2 x 100 µg (310-27-100UG).
310-27-500UG will be provided as 5 x 100 µg (310-27-100UG).
Recombinant Human HVEM-Fc Chimera is a 376 amino acid fusion protein that contains an N-terminal domain corresponding to the extracellular region of HVEM, and a C-terminal domain corresponding to residues 102 to 330 of human IgG1. The calculated molecular weight of Recombinant Human HVEM-Fc is 41.4 kDa.
This product is shipped at ambient temperature. For storage, handling and reconstitution information, please see the lot-specific Certificate of Analysis
Target Information
TNFRSF14 is a member of the TNF-receptor superfamily. TNFRSF14 was identified as a cellular mediator of herpes simplex virus (HSV) entry. Binding of HSV viral envelope glycoprotein D (gD) to TNFRSF14 has been shown to be part of the viral entry mechanism. The cytoplasmic region of TNFRSF14 was found to bind to several TRAF family members, which may mediate the signal transduction pathways that activate the immune response. Activation of the signal transduction pathway involving TNFRSF14 in T cells stimulates T cell proliferation and cytokine production, leading to inflammation and enhanced CTL-mediated tumor immunity, suggesting that these proteins may be useful as potential targets for controlling cellular immune responses. Multiple alternatively spliced transcript variants have been described, but the full-length nature of some of these TNFRSF14 variants have not been determined.
For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.
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