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NUDT4 Products

Antibodies
Lysates
NUDT4 Overexpression Lysate
NUDT4 Overexpression Lysate
NBL1-13863
Species: Hu
Applications: WB
Proteins
Recombinant Human NUDT4 His P ...
Recombinant Human NUDT4 His Protein
NBP2-23304
Species: Hu
Applications: PAGE
NUDT4 Recombinant Protein Ant ...
NUDT4 Recombinant Protein Antigen
NBP1-84250PEP
Species: Hu
Applications: AC

Description

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.

Bioinformatics

Product By Gene ID 11163
Alternate Names
  • Diadenosine 5'-5'''-P1
  • diphosphoinositol polyphosphate phosphohydrolase 2
  • diphosphoinositol polyphosphate phosphohydrolase type 2
  • DIPP-2
  • DIPP2alpha
  • DIPP2beta
  • DIPP2HDCMB47P
  • EC 3.6.1.-
  • EC 3.6.1.52
  • KIAA0487DKFZp686I1281
  • Nucleoside diphosphate-linked moiety X motif 4
  • nudix (nucleoside diphosphate linked moiety X)-type motif 4
  • Nudix motif 4
  • P6-hexaphosphate hydrolase 2

Research Areas for NUDT4

Find related products by research area and learn more about each of the different research areas below.

Signal Transduction