Original Recombinant Human Lilrb4/cd85k/ilt3 Protein (aa 22-259, Fc Tag) Great Gift Idea [prm25j93]
Recombinant Human LILRB4 Protein (Fc Tag) Discover the power of our Recombinant Human LILRB4 Protein (Fc Tag), a highly pure and bioactive protein derived from HEK293 cells. This protein, which spans amino acids 22 to 259 and is tagged with an Fc po
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Original Recombinant Human Lilrb4/cd85k/ilt3 Protein (aa 22-259, Fc Tag) Great Gift Idea [prm25j93]
Recombinant Human LILRB4 Protein (Fc Tag)
Discover the power of our Recombinant Human LILRB4 Protein (Fc Tag), a highly pure and bioactive protein derived from HEK293 cells. This protein, which spans amino acids 22 to 259 and is tagged with an Fc portion, is an essential component for research in immune regulation and cell signaling. With its specific sequence identity and molecular weight, it offers unparalleled precision for your experimental needs.- Enhance your research with a recombinant protein that mimics the natural human LILRB4 molecule.
- Utilize the Fc tag for enhanced stability and potential downstream applications.
Product Properties and Specifications
Our Recombinant Human LILRB4 Protein is meticulously processed to ensure high purity and low endotoxin levels, making it a reliable choice for your research. With a purity of over 90% as determined by reducing SDS-PAGE, and endotoxin levels below 1.0 EU per μg, this protein meets the highest standards for scientific research.- Purity: > 90% as determined by reducing SDS-PAGE.
- Endotoxin: < 1.0 EU per μg as determined by the LAL method.
- Calculated Molecular Weight: 53.2 kDa
- Observed Molecular Weight: 65-85 kDa
Applications and Benefits
The Recombinant Human LILRB4 Protein is ideal for a wide range of applications, including cell signaling studies, immune regulation research, and therapeutic development. Its role in negatively regulating immune cell activation and its potential to induce tolerance make it a valuable tool in understanding and manipulating the immune system.- Utilize this protein in research related to dendritic cells, monocytes, macrophages, and vascular endothelial cells.
- Study the impact of LILRB4 on CD8+ T suppressor cells and their effects on CD4+ Th cells and CD8+ CTL.
- Conduct experiments to understand the role of LILRB4 in enhancing immune tolerance and reducing allogeneic graft rejection.
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