The complexity of NF-κB signaling in inflammation and cancer
Сложность передачи сигналов NF-κB при воспалении и раке
2013-01-01
SCID: 54.1/gw6t67g6
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NF-κB signalingSTAT3cancer progressioninflammationtranscription factor crosstalk
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Abstract (AI)
The NF-κB family of transcription factors has an essential role in inflammation and innate immunity. Furthermore, NF-κB is increasingly recognized as a crucial player in many steps of cancer initiation and progression. During these latter processes NF-κB cooperates with multiple other signaling molecules and pathways. Prominent nodes of crosstalk are mediated by other transcription factors such as STAT3 and p53 or the ETS related gene ERG. These transcription factors either directly interact with NF-κB subunits or affect NF-κB target genes. Crosstalk can also occur through different kinases, such as GSK3-β, p38, or PI3K, which modulate NF-κB transcriptional activity or affect upstream signaling pathways. Other classes of molecules that act as nodes of crosstalk are reactive oxygen species and miRNAs. In this review, we provide an overview of the most relevant modes of crosstalk and cooperativity between NF-κB and other signaling molecules during inflammation and cancer.
Key Findings
1
Kinases such as GSK3-β, p38, and PI3K mediate crosstalk by modulating NF-κB transcriptional activity or upstream signaling pathways.
2
NF-κB cooperates with transcription factors including STAT3, p53, and ERG through direct subunit interactions or regulation of NF-κB target genes.
3
NF-κB is essential for inflammation and innate immunity and is a crucial regulator of multiple stages of cancer initiation and progression.
4
NF-κB signaling complexity arises from extensive cooperativity with diverse transcription factors, kinases, reactive oxygen species, and microRNAs.
5
Reactive oxygen species and microRNAs represent additional crosstalk nodes connecting NF-κB signaling with inflammatory and cancer-related processes.
Research Object
NF-κB signaling in inflammation and cancer
Research Subject
Crosstalk and cooperativity between NF-κB and other signaling molecules, transcription factors, kinases, reactive oxygen species, and miRNAs
Publication Details
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2013-01-01
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