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LRDD Polyclonal Antibody, AbBy Fluor™ 647 Conjugated

Product Specifications

Background

The death domain (DD) containing protein PIDD is a p53 target gene in an erythroleukemia cell line that undergoes G1 phase arrest and subsequent apoptosis after p53 expression. Independently, PIDD was also described as a DD-containing protein with unknown function. The N-terminal region of PIDD contains seven leucine-rich repeats (LRRs), a protein interaction motif found in various proteins with diverse functions, followed by two ZU-5 domains and a C-terminal DD. PIDD forms a complex with caspase-2 and the adaptor protein RAIDD. Increased PIDD expression results in spontaneous activation of caspase-2 and sensitization to apoptosis by genotoxic stimuli, via interaction with caspase-2 and CRADD/RAIDD. PIDD also promotes apoptosis downstream of p53 as component of the DNA damage/stress response pathway that connects p53/TP53 to apoptosis. PIDD has also been shown to interact with NEMO/IKBKG and RIP1 and enhance sumoylation and ubiquitination of NEMO/IKBKG, an important component for activation of the transcription factor NF-kappa-B.

Synonyms

Leucine rich repeats and death domain containing; Leucine-rich repeats and death domain containing; MGC16925; p53-induced protein with a death domain; PIDD; DKFZp434D229; PIDD_HUMAN.

Cellular Locus

Cytoplasm, Nucleus

Host

Rabbit

Cross Reactivity

Rat

Immunogen

551-650/910

Target

LRDD

Clonality

Polyclonal

Isotype

IgG

Conjugation

AbBy Fluor™ 647

Source

KLH conjugated synthetic peptide derived from human LRDD/PIDD

Applications

IF (IHC-P), IF (IHC-F), IF (ICC)

Purification

Purified by Protein A.

Excitation Emission

650nm/665nm

Concentration

1µg/µl

Dilution

IF (IHC-P) (1:50-200), IF (IHC-F) (1:50-200), IF (ICC) (1:50-200)

Buffer

Aqueous buffered solution containing 0.01M TBS (pH7.4) with 1% BSA, 0.02% Proclin300 and 50% Glycerol.

Modification

Unmodified

Storage Conditions

Store at -20°C. Aliquot into multiple vials to avoid repeated freeze-thaw cycles.

Predicted Cross Reactivity

Human, Mouse

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