Recombinant Human PDCD1, His-tagged, Biotinylated
Cat.No. : | PDCD1-257H |
Product Overview : | Human PD-1 /PDCD1 Protein, Biotinylated (Biotinylated PD-1 / PDCD1) Pro 21 - 167 Gln, was labeled with biotin based on rhPD1 Protein, which was produced in human 293 cells (HEK293). |
Availability | December 09, 2024 |
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Description : | This gene encodes a cell surface membrane protein of the immunoglobulin superfamily. This protein is expressed in pro-B-cells and is thought to play a role in their differentiation. In mice, expression of this gene is induced in the thymus when anti-CD3 antibodies are injected and large numbers of thymocytes undergo apoptosis. Mice deficient for this gene bred on a BALB/c background developed dilated cardiomyopathy and died from congestive heart failure. These studies suggest that this gene product may also be important in T cell function and contribute to the prevention of autoimmune diseases. |
Source : | HEK293 |
Species : | Human |
Tag : | His |
Form : | Lyophilized from 0.22 μm filtered solution in PBS, pH7.4. Normally Trehalose are added as protectants before lyophilization. |
Molecular Mass : | Biotinylated PD-1 / PDCD1, fused with 6×His tag at the C-terminus, has a calculated MW of 17.3 kDa. The predicted N-terminus is Pro 21. DTT-reduced Protein migrates as 38-42 kDa due to glycosylation. |
Endotoxin : | Less than 1.0 EU per μg of the Biotinylated PD-1 / PDCD1 by the LAL method. |
Purity : | >95% as determined by reduced SDS-PAGE. |
Storage : | Avoid repeated freeze-thaw cycles. No activity loss was observed after storage at: In lyophilized state for 1 year (4°C); After reconstitution under sterile conditions for 3 months (-70°C). |
Protein length : | Pro21-167Gln |
Gene Name : | PDCD1 programmed cell death 1 [ Homo sapiens ] |
Official Symbol : | PDCD1 |
Synonyms : | PDCD1; programmed cell death 1; programmed cell death protein 1; CD279; PD1; protein PD-1; PD-1; SLEB2; hPD-1; hPD-l; |
Gene ID : | 5133 |
mRNA Refseq : | NM_005018 |
Protein Refseq : | NP_005009 |
MIM : | 600244 |
UniProt ID : | Q15116 |
Chromosome Location : | 2q37.3 |
Pathway : | Adaptive Immune System, organism-specific biosystem; Cell adhesion molecules (CAMs), organism-specific biosystem; Cell adhesion molecules (CAMs), conserved biosystem; Costimulation by the CD28 family, organism-specific biosystem; Immune System, organism-specific biosystem; PD-1 signaling, organism-specific biosystem; T cell receptor signaling pathway, organism-specific biosystem; |
Function : | protein binding; protein tyrosine phosphatase activity; signal transducer activity; |
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Not For Human Consumption!
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Write a reviewTimely antibody validation, a valuable asset for our laboratory.
Precise protein quantification, fundamental for maintaining data accuracy.
Dependable peptide synthesis, accelerates our peptide-based projects effectively.
Q&As (14)
Ask a questionPDCD1 modulates responses to viral infections, affecting T cell function and viral clearance.
PDCD1 modulates responses to viral infections, affecting T cell function and viral clearance.
PDCD1 helps develop immune tolerance, preventing overactive immune responses.
PDCD1 maintains a balance between immune response and autoimmunity, preventing self-reactivity.
PDCD1 contributes to T cell exhaustion in chronic diseases and cancers, reducing immune efficacy.
PDCD1 maintains a balance between immune response and autoimmunity, preventing self-reactivity.
PDCD1's role in immunotherapy is pivotal, as blocking PD-1 enhances anti-tumor responses.
PDCD1 contributes to T cell exhaustion in chronic diseases and cancers, reducing immune efficacy.
PDCD1 regulates T cell activity by inhibiting immune responses, crucial in immune checkpoints.
PDCD1's role in immunotherapy is pivotal, as blocking PD-1 enhances anti-tumor responses.
PDCD1 helps develop immune tolerance, preventing overactive immune responses.
Changes in PDCD1 signaling impact autoimmune disease progression, influencing immune system activity.
PDCD1 regulates T cell activity by inhibiting immune responses, crucial in immune checkpoints.
Changes in PDCD1 signaling impact autoimmune disease progression, influencing immune system activity.
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