Anti-Human NADE

Leinco Technologies
Product Code: LEI-N155
Product Group: Primary Antibodies
CodeSizePrice
LEI-N155-20ug20 ug£199.00
Quantity:
LEI-N155-0.1mg0.1 mg£591.00
Quantity:
Prices exclude any Taxes / VAT

Overview

Host Type: Rabbit
Antibody Clonality: Polyclonal
Regulatory Status: RUO
Target Species: Human
Applications:
  • Immunohistochemistry- Paraffin Embedded (IHC-P)
  • Western Blot (WB)
Shipping:
Ambient
Storage:
This polyclonal antibody is stable for at least one week when stored at 2-8°C. For long term storage aliquot in working volumes without diluting and store at -20°C in a manual defrost freezer. Avoid Repeated Freeze Thaw Cycles.

Images

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Further Information

Concentration:
0.5 mg/ml
Conjugate/Tag/Label:
Purified No Carrier Protein
Format:
This polyclonal antibody is formulated in phosphate buffered saline (PBS) pH 7.4 containing 0.02% sodium azide as a preservative.
Formulation:
This polyclonal antibody is formulated in phosphate buffered saline (PBS) pH 7.4 containing 0.02% sodium azide as a preservative.
Immunogen:
PN:N168
Long Description:
The p75 neurotrophin receptor (p75NTR) is a member of the tumor necrosis receptor superfamily and can mediate cell death and cell survival in response to nerve growth factor (NGF) (1 for review). The p75NTR-associated cell death executor (NADE) mediates apoptosis by interacting with the cell death domain of p75NTR following the binding of NGF by p75NTR.2 Recent studies have shown that NADE also interacts with second mitochondria-derived activator of caspase (Smac). Co-expression of NADE and Smac promotes TRAIL-induced apoptosis and inhibits XIAP-mediated Smac ubiquitization. It has been suggested that it is this interaction between NADE and Smac that allows apoptosis to proceed. Finally, although initially discovered as an mRNA expressed in ovarian granulosa cells,3 NADE has been suggested to play a role in the neuronal death seen in epileptic brain damage.4
Target:
NADE

References

1. Gentry, JJ. et al. (2004) Pro. Brain Res. 146:25 2. Mukai, J. et al. (2000) J. Biol. Chem. 275:17566 3. Rapp, G. et al. (1990) DNA Cell Biol. 9:479 4. Yi, JS. et al. (2003) Neurosci. Lett. 347:126

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