DDIT4 Antibody | CSB-PA794556

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CSB-PA794556
Availability:
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  • DDIT4 Antibody
  • The image on the left is immunohistochemistry of paraffin-embedded Human thyroid cancer tissue using CSB-PA794556 (DDIT4 Antibody) at dilution 1/20, on the right is treated with fusion protein. (Original magnification: ×200)
€315.80 - €488.70

Description

DDIT4 Antibody | CSB-PA794556 | Cusabio

DDIT4 Antibody is Available at Gentaur Genprice with the fastest delivery.

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Product Type: Polyclonal Antibody

Target Names: DDIT4

Aliases: DNA-damage-inducible transcript 4

Background: REDD-1, also designated DNA-damage-inducible transcript 4, dig2 or RTP801, is thought to function in the regulation of reactive oxygen species (ROS) . REDD-1 expression has also been linked to apoptosis, Ab toxicity and the pathogenesis of ischemic diseases. As an HIF-1-responsive gene, REDD-1 exhibits strong hypoxia-dependent upregulation in ischemic cells of neuronal origin. In response to stress due to DNA damage and glucocorticoid treatment, REDD-1 is upregulated at the transcriptional level. REDD-1 negatively regulates the mammalian target of Rapamycin (mTOR), a serine/threonine kinase often referred to as FRAP. It is crucial in the coupling of extra- and intracellular cues to FRAP regulation. The absence of REDD-1 is associated with the development of retinopathy, a major cause of blindness.

Isotype: IgG

Conjugate: Non-conjugated

Clonality: Polyclonal

Uniport ID: Q9NX09

Host Species: Rabbit

Species Reactivity: Human, Mouse, Rat

Immunogen: Fusion protein of human DDIT4

Immunogen Species: Human

Applications: ELISA, IHC

Tested Applications: ELISA, IHC;ELISA:1:1000-1:2000, IHC:1:25-1:100

Purification Method: Antigen affinity purification

Dilution Ratio1: ELISA:1:1000-1:2000

Dilution Ratio2: IHC:1:25-1:100

Dilution Ratio3:

Dilution Ratio4:

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Dilution Ratio6:

Buffer: -20°C, pH7.4 PBS, 0.05% NaN3, 40% Glycerol

Form: Liquid

Storage: Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.

Initial Research Areas: Cardiovascular

Research Areas: Epigenetics & Nuclear Signaling;Cancer;Cardiovascular;Metabolism

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