Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT]
Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT] Introducing our high-quality Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT], a versatile research tool designed for in vitro studies. This protein is a recombinant mouse B7-DC/PD-L2/CD273, fu
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Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT]
Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT]
Introducing our high-quality Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT], a versatile research tool designed for in vitro studies. This protein is a recombinant mouse B7-DC/PD-L2/CD273, fused with a C-Fc tag, and expressed in HEK293 cells. With a calculated molecular weight of 49.7 kDa and an observed molecular weight range of 70-80 kDa, this protein is ideal for various applications in immunology and cancer research.- Expression Host: HEK293 Cells
- Sequence: Leu20-Arg219
- Accession: Q9WUL5
Product Properties and Specifications
Our Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT] is produced with a purity of >95% as determined by reducing SDS-PAGE. It is endotoxin-free, with an endotoxin level of < 1.0 EU per μg of the protein, ensuring minimal interference in your experiments. The protein is lyophilized from a 0.2 μm filtered solution of 20mM PB, 150mM NaCl, pH 7.4, and is typically formulated with 5%-8% trehalose, mannitol, and 0.01% Tween 80 for stability.- Purity: >95%
- Endotoxin: < 1.0 EU/μg
- Storage: -20 to -80℃
Practical Applications and Benefits
This Classic Style Recombinant Mouse B7-dc/pd-l2/cd273 Protein (fc Tag) Massive 45% Savings [GdkBPjuT] is a valuable tool for researchers studying the immune response, tumor immunity, and T-cell activation. Its application extends to investigating the role of PD-L2 in immune regulation and its potential as a therapeutic target in cancer immunotherapy. The protein's ability to bind to PD-1 cells and enhance T cell killing in a PD-1–independent mechanism makes it a crucial component for understanding immune checkpoint pathways.- Use in immunology and cancer research
- Investigating immune checkpoint pathways
- Potential therapeutic target in cancer immunotherapy
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