Target intelligence / Profile preview

Nuclear factor kappa B (NF-κB) (NF-κB)

Target
NF-κB
Molecular classification
Transcription factor, Protein complex
01

Overview

Nuclear factor kappa B (NF-κB) is a pleiotropic transcription factor complex that serves as a master regulator of the inflammatory response, immune cell development, and cell survival pathways [1][2]. The NF-κB family consists of five structurally related proteins—p50, p52, RelA (p65), RelB, and c-Rel—which form various functional homo- and heterodimers that bind to specific DNA sequences to induce gene expression [3][4]. Under homeostatic conditions, NF-κB is sequestered in the cytoplasm by Inhibitor of κB (IκB) proteins; activation is typically triggered by pro-inflammatory cytokines or pathogen-associated molecular patterns that lead to the phosphorylation and subsequent proteasomal degradation of IκB, allowing NF-κB to translocate into the nucleus [2][5]. In many pathologies, particularly various cancers and chronic inflammatory diseases like rheumatoid arthritis, NF-κB is constitutively activated, promoting tumor growth, resistance to apoptosis, and sustained tissue inflammation [5][6]. Therapeutic targeting of the NF-κB pathway is a major focus in oncology and immunology, often achieved through proteasome inhibitors that prevent the release of active NF-κB or corticosteroids that increase IκB synthesis, though the broad physiological importance of the factor necessitates careful management of immunosuppressive side effects [1][6]. The term "Nuclear factor" provided is considered incomplete or generic, as it encompasses a vast category of transcription factors, though NF-κB is the most common clinically relevant reference [1].

Other names
NF-kappaBNF-kappa BNFKBNuclear factor of kappa light polypeptide gene enhancer in B-cellsRel family
02

Mechanism of action

Inhibition of the proteasome to prevent IκB degradation, inhibition of the IκB kinase (IKK) complex, stabilization of IκB alpha, or direct interference with DNA binding and nuclear translocation.

03

Biological functions

Signal transductionImmune responseApoptosisCell proliferationInflammatory responseCell survival
04

Disease associations

CancerInflammationAutoimmune diseaseNeurodegenerative diseaseInfection
05

Safety considerations

Increased susceptibility to infection (immunosuppression)Systemic toxicity due to ubiquitous expressionPeripheral neuropathyCytopeniaImpairment of normal wound healing
06

Interacting drugs

Bortezomib

7 more in the full profile.

07

Biomarkers

Phosphorylated p65 (RelA)Nuclear translocation of p65IκB alpha levelsInterleukin-6 (IL-6)Tumor Necrosis Factor-alpha (TNF-alpha)

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