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Anti-p53 Antibody (1J151)

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Catalog No. TMAY-03854
Alias tumor protein p53, TP53, p53

Anti-p53 Antibody (1J151) is a Mouse antibody targeting p53. Anti-p53 Antibody (1J151) can be used in ELISA(Cap).

Anti-p53 Antibody (1J151)

Anti-p53 Antibody (1J151)

😃Good
Catalog No. TMAY-03854Alias tumor protein p53, TP53, p53
Anti-p53 Antibody (1J151) is a Mouse antibody targeting p53. Anti-p53 Antibody (1J151) can be used in ELISA(Cap).
Pack SizePriceAvailabilityQuantity
20 μL$69 7-10 days
100 μL$198 7-10 days
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Product Introduction

Bioactivity
Description
Anti-p53 Antibody (1J151) is a Mouse antibody targeting p53. Anti-p53 Antibody (1J151) can be used in ELISA(Cap).
Aliastumor protein p53, TP53, p53
Ig Type
Monoclonal Mouse IgG1
Clone
1J151
Reactivity
Cynomolgus
Application
ELISA(Cap)
Antibody Type
Monoclonal
Host SpeciesMouse
ConstructionThis antibody was produced from a hybridoma resulting from the fusion of a mouse myeloma with B cells obtained from a mouse immunized with purified, recombinant Cynomolgus p53 ( TMPY-02228; E3U906; Met1-Asp393). The IgG fraction of the cell culture supernatant was purified by Protein A affinity chromatography.
PurificationProtein A
AppearanceLiquid
Formulation0.2 μm filtered solution in PBS
Research Backgroundp53, also known as Tp53, is a DNA-binding protein which belongs to the p53 family. It contains transcription activation, DNA-binding, and oligomerization domains. p53 protein is expressed at low level in normal cells and at a high level in a variety of transformed cell lines, where it's believed to contribute to transformation and malignancy. p53 (TP53) is a transcription factor whose protein levels and post-translational modification state alter in response to cellular stress (such as DNA damage, hypoxia, spindle damage). Activation of p53 begins through a number of mechanisms including phosphorylation by ATM, ATR, Chk1 and MAPKs. MDM2 is a ubiquitin ligase that binds p53 and targets p53 for proteasomal degradation. Phosphorylation, p14ARF and USP7 prevent MDM2-p53 interactions, leading to an increase in stable p53 tetramers in the cytoplasm. Further modifications such as methylation and acetylation lead to an increase in Tp53 binding to gene specific response elements. Tp53 regulates a large number of genes (>100 genes) that control a number of key tumor suppressing functions such as cell cycle arrest, DNA repair, senescence and apoptosis. Whilst the activation of p53 often leads to apoptosis, p53 inactivation facilitates tumor progression. It is postulated to bind to a p53-binding site and activate expression of downstream genes that inhibit growth and/or invasion, and thus function as a tumor suppressor. Mutants of p53 that frequently occur in a number of different human cancers fail to bind the consensus DNA binding site, and hence cause the loss of tumor suppressor activity. Defects in TP53 are a cause of esophageal cancer, Li-Fraumeni syndrome, lung cancer and adrenocortical carcinoma.Cancer ImmunotherapyImmune CheckpointImmunotherapyTargeted Therapy
Related Conjugates and Formulations
Conjucates
Unconjugated
Antigen Details
Immunogen
Recombinant Cynomolgus p53 Protein (TMPY-02228)
Antigen Species
Cynomolgus
Biology Area
Apoptosis Transcription Factors and Regulators, Cancer Drug Targets, Tumor Suppressors
Chemical Properties
Stability & Storage
Stability & StorageStore at 2°C-8°C for 1 month. Store at -20°C or -80°C for 12 months. Avoid repeated freeze-thaw cycles. Preservative-Free.
TransportShipping with blue ice.

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Please see Inhibitor Handling Instructions for more frequently ask questions. Topics include: how to prepare stock solutions, how to store products, and cautions on cell-based assays & animal experiments, etc

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