p53 RNAi

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Summary
Product Discontinued
View other related p53 RNAi

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    • Catalog Number
      H00007157-R01V
    • Availability
      Product Discontinued

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p53 RNAi Summary

Specificity
Homo sapiens tumor protein p53 (Li-Fraumeni syndrome), mRNA
Gene
TP53

Applications/Dilutions

Dilutions
  • RNA Inhibition
  • RNAi sequence position
  • Western Blot
Application Notes
This RNAi causes effective protein knockdown which has been antibody validated.

Packaging, Storage & Formulations

Storage
Store at -20C. Avoid freeze-thaw cycles.
Buffer
DEPC-treated Water

Notes

This product is produced by and distributed for Abnova, a company based in Taiwan.

Alternate Names for p53 RNAi

  • Antigen NY-CO-13
  • BCC7
  • FLJ92943
  • LFS1
  • LFS1TRP53
  • p53 tumor suppressor
  • p53
  • P53cellular tumor antigen p53
  • Phosphoprotein p53
  • TP53
  • transformation-related protein 53
  • TRP53
  • tumor protein p53
  • Tumor suppressor p53

Background

Position of the Chimera RNAi. The related RNAi products listed were designed from different accesion number but sharing the same RNAi sequence. Chimera RNA interference (chimera RNAi) is process by which small interfering RNA/DNA chimera triggers the destruction of mRNA for the original gene.  The discovery work, design, and application of chimera RNAi has been pioneered by Professor Kaoru Saigo and Dr. Kumiko Ui-Tei at the University of Tokyo.  Chimera RNAi has many advantages over the conventional siRNAs.  First, it has been demonstrated to have reliable knock-down for over 10,000 human genes.  Because the human genome is composed of an intricate, genetic network, chimera RNAi's unique design has successfully obviated the off-target effects including microRNA-based influence.  Another advantage of the chimera RNAi technology is its effectiveness at low concentrations (0.5nM to 5nM); only mRNA is destroyed so genomic genes are not affected.  Finally, having both the sense and anti-sense strands consisting RNA/DNA chimera, it offers much greater compound stability for streamlining in vitro and in vivo assays and applications while minimizing interferon induction and other adverse reactions.

Limitations

This product is for research use only and is not approved for use in humans or in clinical diagnosis. RNAi are guaranteed for 3 months from date of receipt.

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Publications for p53 RNAi (H00007157-R01V) (0)

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Product General Protocols

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Video Protocols

WB Video Protocol

FAQs for p53 RNAi (H00007157-R01V) (0)

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Additional p53 Products

Research Areas for p53 RNAi (H00007157-R01V)

Find related products by research area.

Blogs on p53. Showing 1-10 of 19 blog posts - Show all blog posts.

Developmental regulator Daam2 promotes glial cell tumors by degrading Von Hippel-Lindau protein
By Jamshed Arslan Pharm.D. Glioblastoma is an aggressive type of cancer that forms from the star-shaped glial cells of the central nervous system, called astrocytes. Intriguingly, several genes linked to glioblasto...  Read full blog post.

Autophagy independent roles of the core ATG proteins
By Christina Towers, PhD. Autophagy and ATG ProteinsAutophagy is a nutrient recycling process that cells use to fuel metabolism, particularly in response to nutrient deprivation.  It is critical for removal of dam...  Read full blog post.

Killing two birds with one stone: Treating inflammation and cancer by inhibiting prolyl-4-hydroxylase-1
By Jamshed Arslan Pharm.D. The cell’s oxygen-sensing machinery comprises prolyl-4-hydroxylases (P4Hs 1-3, PHDs 1-3, or EGLN 1-3) and their canonical target hypoxia-inducible factors (HIFs). When oxygen levels ...  Read full blog post.

Pathway Highlight: Which caspase substrates contribute to the morphological features associated with apoptosis?
Apoptosis, or programmed cell death, is controlled by a caspase signal cascade that activates downstream signals to induce the morphological changes used to differentiate apoptosis from other forms of cell death.  Novus Biologicals offers a variet...  Read full blog post.

The role of p53 in UV radiation DNA damage and subsequent tumorogenesis
p53, the protein product of the tp53 gene, is one of the most widely studied tumor suppressor proteins in cancer research.  p53 is unique in that it demonstrates both tumor suppressive and tumor progressive properties depending on whether it is fu...  Read full blog post.

MAPK8/JNK1 - A multifunctional kinase and drug target for cancer therapeutics
The c-Jun N-terminal kinase (JNK) family is a group of regulatory kinases with important functions in cell morphogenesis, inflammation, differentiation, and cell death (1). Aberrant activation of JNK family proteins in cancers has led to interest i...  Read full blog post.

p53 - Investigating an important tumor suppressor
p53 is a tumor suppressor that has a central role in regulating cell cycle arrest, DNA repair, and apoptosis. p53 is widely studied for its role in cancer and is mutated or altered in more than half of all cancers (1). This widespread role in tumor...  Read full blog post.

ATM - detecting and responding to DNA damage
Ataxia telangiectasia mutated (ATM) is essential for the maintenance of genomic stability. ATM is a 370 kDa serine-threonine kinase that is constitutively expressed in various tissues. Although primarily nuclear, ATM is also found at lower levels ...  Read full blog post.

NOXA - a BH3-only protein balancing cell death decisions
Noxa is a BH3-only protein involved in regulating cell death decisions. Noxa is a primary p53-response gene and is upregulated in response to p53 overexpression or DNA damage. Noxa can also be induced by alternative mechanisms including through a ...  Read full blog post.

p73: An Important Tumor Suppressor Cousin of p53
p73 has been identified as a long-lost cousin of the p53 tumor suppressor protein. It has high homology with both p53 and with p63, a gene implicated in the maintenance of epithelial stem cells. The presence of significant homology between the DNA-bin...  Read full blog post.

Showing 1-10 of 19 blog posts - Show all blog posts.

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Bioinformatics

Gene Symbol TP53