The NF- B Family of Transcription Factors and Its Regulation
Семейство транскрипционных факторов NF-κB и его регуляция
2009-09-02
SCID: 54.1/tb2erdf6
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IkappaB kinase complexNF-kappaBinflammation and immunitypost-translational modificationssignal transduction
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Abstract (AI)
Nuclear factor-kappaB (NF-kappaB) consists of a family of transcription factors that play critical roles in inflammation, immunity, cell proliferation, differentiation, and survival. Inducible NF-kappaB activation depends on phosphorylation-induced proteosomal degradation of the inhibitor of NF-kappaB proteins (IkappaBs), which retain inactive NF-kappaB dimers in the cytosol in unstimulated cells. The majority of the diverse signaling pathways that lead to NF-kappaB activation converge on the IkappaB kinase (IKK) complex, which is responsible for IkappaB phosphorylation and is essential for signal transduction to NF-kappaB. Additional regulation of NF-kappaB activity is achieved through various post-translational modifications of the core components of the NF-kappaB signaling pathways. In addition to cytosolic modifications of IKK and IkappaB proteins, as well as other pathway-specific mediators, the transcription factors are themselves extensively modified. Tremendous progress has been made over the last two decades in unraveling the elaborate regulatory networks that control the NF-kappaB response. This has made the NF-kappaB pathway a paradigm for understanding general principles of signal transduction and gene regulation.
Key Findings
1
Inducible NF-κB activation requires phosphorylation-dependent proteasomal degradation of IκB inhibitors, releasing cytosol-retained NF-κB dimers.
2
Most signaling pathways activating NF-κB converge on the IκB kinase complex, which phosphorylates IκB proteins and is essential for signal transmission.
3
NF-κB activity is regulated by extensive post-translational modifications of IKK, IκB, pathway mediators, and the transcription factors themselves.
4
NF-κB transcription factors regulate critical processes including inflammation, immunity, cell proliferation, differentiation, and cell survival.
5
The NF-κB pathway has become a paradigm for understanding general principles of signal transduction and gene regulation.
Research Object
The NF-kappaB transcription-factor signaling system, including NF-kappaB dimers, IkappaB inhibitors, the IKK complex, and associated pathway mediators
Research Subject
The regulatory mechanisms controlling NF-kappaB activation and activity, including IkappaB degradation, IKK-mediated phosphorylation, and post-translational modifications
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2009-09-02
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