Comparison

Anti-IκBα (C-terminus) Antibody

Item no. ABC-AN1814
Manufacturer Abcepta
Amount 100 ul
Category
Specific against Cattle (Bovine)
Host Rabbit
Isotype IgG
Alias IkB,MAD3,IkappaBalpha,NFkappaB inhibitor IkBa
Available
Manufacturer - Category
Primary Antibodies; Cancer; Cell Biology; Immunology; Signal Transduction
Manufacturer - Targets
The NF-κB/Rel transcription factors are present in the cytosol in an inactive state complexed with the inhibitory IκB proteins. Activation of IκBα occurs through both serine and tyrosine phosphorylation events. Activation through phosphorylation at Ser-32 and Ser-36 is followed by proteasome-mediated degradation, resulting in the release and nuclear translocation of active NF-κB. This pathway of IκBα regulation occurs in response to various NF-κB-activating agents, such as TNFα, interleukins, LPS, and irradiation. An alternative pathway for IκBα regulation occurs through tyrosine phosphorylation of Tyr-42 and Tyr-305. Tyr-42 is phosphorylated in response to oxidative stress and growth factors. This phosphorylation can lead to degradation of IκBα and NF-κB-activation. In contrast, Tyr-305 phosphorylation by c-Abl has been implicated in IκBα nuclear translocation and inhibition of NF-κB-activation. Thus, tyrosine phosphorylation of IκBα may be an important regulatory mechanism in NF-κB signaling.
Bio Background
The NF-?B/Rel transcription factors are present in the cytosol in an inactive state complexed with the inhibitory I?B proteins. Activation of I?B? occurs through both serine and tyrosine phosphorylation events. Activation through phosphorylation at Ser-32 and Ser-36 is followed by proteasome-mediated degradation, resulting in the release and nuclear translocation of active NF-?B. This pathway of I?B? regulation occurs in response to various NF-?B-activating agents, such as TNF?, interleukins, LPS, and irradiation. An alternative pathway for I?B? regulation occurs through tyrosine phosphorylation of Tyr-42 and Tyr-305. Tyr-42 is phosphorylated in response to oxidative stress and growth factors. This phosphorylation can lead to degradation of I?B? and NF-?B-activation. In contrast, Tyr-305 phosphorylation by c-Abl has been implicated in I?B? nuclear translocation and inhibition of NF-?B-activation. Thus, tyrosine phosphorylation of I?B? may be an important regulatory mechanism in NF-?B signaling.
Clonality
Rabbit Polyclonal
Gene Name
NFKBIA
Reactivity
B
Calculated Molecular Weight
35609

Note: The presented information and documents (Manual, Product Datasheet, Safety Datasheet and Certificate of Analysis) correspond to our latest update and should serve for orientational purpose only. We do not guarantee the topicality. We would kindly ask you to make a request for specific requirements, if necessary.

All products are intended for research use only (RUO). Not for human, veterinary or therapeutic use.

Amount: 100 ul
Available: In stock
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