2015
DOI: 10.1371/journal.pone.0130170
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Quantitative Analysis of NF-κB Transactivation Specificity Using a Yeast-Based Functional Assay

Abstract: The NF-κB transcription factor family plays a central role in innate immunity and inflammation processes and is frequently dysregulated in cancer. We developed an NF-κB functional assay in yeast to investigate the following issues: transactivation specificity of NF-κB proteins acting as homodimers or heterodimers; correlation between transactivation capacity and in vitro DNA binding measurements; impact of co-expressed interacting proteins or of small molecule inhibitors on NF-κB-dependent transactivation. Ful… Show more

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Cited by 5 publications
(8 citation statements)
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“…The prototypical NF-κB is a heterodimer consisting of two subunits, p65 and p50. The p65 has the strongest transcriptional activity, whereas the p50 subunit lacks transactivation domain and accounts for the strong DNA-binding affinity ( Gilmore, 2006 ; Sharma et al, 2015 ). We have reported that the degradation and dissociation of Iκ-Bα from NF-κB, the NF-κBp65 translocation to the nucleus and binding to the DNA are impaired during 2-AA-mediated tolerance ( Bandyopadhaya et al, 2012 ; Figure 1 ).…”
Section: Introductionmentioning
confidence: 99%
“…The prototypical NF-κB is a heterodimer consisting of two subunits, p65 and p50. The p65 has the strongest transcriptional activity, whereas the p50 subunit lacks transactivation domain and accounts for the strong DNA-binding affinity ( Gilmore, 2006 ; Sharma et al, 2015 ). We have reported that the degradation and dissociation of Iκ-Bα from NF-κB, the NF-κBp65 translocation to the nucleus and binding to the DNA are impaired during 2-AA-mediated tolerance ( Bandyopadhaya et al, 2012 ; Figure 1 ).…”
Section: Introductionmentioning
confidence: 99%
“…NF-κB exi sts as an inactive complex of the p50 and p65 subunits and the inhibitory protein IκB-α. p65 has the strongest tra nscriptional activity and has strong DNA binding affinity (Sharma et al, 2015). In recent years, phosphorylation of NF-κB, especially p65 serine 536 phosphorylation has become a new mechanism of transcriptional activatio n (Sasaki et al, 2005).…”
Section: Discussionmentioning
confidence: 99%
“…These yeast models have provided unique frontier for screening of both cytoprotective and cytotoxic compounds [18,21,[397][398][399]. Several yeast reporter systems have also been developed, which aid AD research and provide directions for future research [400,401].…”
Section: Future Perspectives Of Using Yeast As a Model Organism For Amentioning
confidence: 99%