VPS34 RNAi

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Product Details

Summary
Reactivity HuSpecies Glossary
Applications RNAi, RNAi SP

Order Details

VPS34 RNAi Summary

Specificity
phosphoinositide-3-kinase, class 3 (PIK3C3), mRNA
Gene
PIK3C3

Applications/Dilutions

Application Notes
This RNAi causes protein knockdown.

Packaging, Storage & Formulations

Storage
Store at -20C. Avoid freeze-thaw cycles.

Notes

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

Alternate Names for VPS34 RNAi

  • EC 2.7.1
  • EC 2.7.1.137
  • hVps34
  • MGC61518
  • phosphatidylinositol 3-kinase catalytic subunit type 3
  • Phosphatidylinositol 3-kinase p100 subunit
  • Phosphoinositide-3-kinase class 3
  • phosphoinositide-3-kinase, class 3
  • PI 3-Kinase C3
  • PI3K type 3
  • PI3-kinase type 3
  • PIK3C3
  • PtdIns-3-kinase type 3
  • VPS34

Background

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 VPS34 RNAi (H00005289-R02) (0)

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Bioinformatics Tool for VPS34 RNAi (H00005289-R02)

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Blogs on VPS34.

UVRAG - A regulator of membrane trafficking in autophagy and endocytosis
UV resistance-associated gene (UVRAG) is a tumor suppressor that is commonly mutated in colon and breast cancer. While UVRAG was discovered for its ability to complement UV sensitivity in xeroderma pigmentosum cells, its main functions are in auto...  Read full blog post.

VPS34 - autophagy initiator and regulator of endosomal trafficking
VPS34, vacuolar protein sorting 34, is the only identified Class III phosphoinositide-3 kinase (PI3K) in mammals and is ubiquitously expressed in all eukaryotic cells. VPS34 is a 100 kDa protein responsible for phosphorylating phosphatidylinositol...  Read full blog post.

ULK1 - mammalian homologue of the yeast ATG1 kinase
Autophagy is an important cellular process involved in degradation and recycling of cellular macromolecules in response to stress or starvation. Autophagy is carried out in four main phases: phagophore nucleation, autophagosome elongation, docking...  Read full blog post.

VPS41 - An important regulator of lysosomal trafficking
Membrane fusion is an essential step during the trafficking of endosomes and vesicles throughout the cell. Membrane fusion events are facilitated by multisubunit tethering complexes (MTC) including CORVET and HOPS. These complexes interact with Rab...  Read full blog post.

Beclin 2, a mammal-specific homolog of Beclin 1 with unique functional similarities and differences
Beclin 2 (BECN2) is also called Beclin-1-like protein 1/ BECN1P1 and it was recently identified by He et al 2013 as a mammal-specific homolog of the evolutionarily conserved protein Beclin 1 which is well established for its role in the regulation...  Read full blog post.

Beclin 1 - a key regulator of autophagosome formation
The Beclin 1 protein is a central regulator of autophagy in mammalian cells. Autophagy is an essential process used to maintain cellular homeostasis by degrading and recycling cellular components such as damaged or worn out organelles and macromole...  Read full blog post.

ATG9A - early marker autophagosome assembly
ATG9A is the only essential integral membrane protein involved in autophagy. ATG9A contains six transmembrane domains and initiates the assembly of autophagosomes. The autophagosome is a double-membrane structure that engulfs and eventually degrade...  Read full blog post.

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Bioinformatics

Gene Symbol PIK3C3
Entrez