AbstractMembers of the Mad family of bHLH-Zip proteins heterodimerize with Max to repress transcription in a sequence-specific manner. Transcriptional repression by Mad:Max heterodimers is mediated by ternary complex formation with either of the corepressors mSin3A or mSin3B. We report here that mSin3A is an in vivo component of large, heterogeneous multiprotein complexes and is tightly and specifically associated with at least seven polypeptides. Two of the mSin3A-associated proteins, p50 and p55, are highly related to the histone deacetylase HDAC1. The mSin3A immunocomplexes possess histone deacetylase activity that is sensitive to the specific deacetylase inhibitor trapoxin. mSin3A-targeted repression of a reporter gene is reduced by tra...
AbstractGene-specific targeting of the Sin3 corepressor complex by DNA-bound repressors is an import...
SummaryThe yeast histone deacetylase Rpd3 can be recruited to promoters to repress transcription ini...
SummaryThe yeast histone deacetylase Rpd3 can be recruited to promoters to repress transcription ini...
AbstractTranscriptional repression by Mad–Max heterodimers requires interaction of Mad with the core...
AbstractMembers of the Mad family of bHLH-Zip proteins heterodimerize with Max to repress transcript...
AbstractThe bHLH-ZIP protein Mad heterodimerizes with Max as a sequence-specific transcriptional rep...
Transcriptional repression by Mad-Max heterodimers requires interaction of Mad with the corepressors...
AbstractTranscriptional repression by Mad–Max heterodimers requires interaction of Mad with the core...
AbstractMad proteins are transcriptional repressors that antagonize transcriptional activation and t...
AbstractThe bHLH-ZIP protein Mad heterodimerizes with Max as a sequence-specific transcriptional rep...
The bHLH-ZIP protein Mad heterodimerizes with Max as a sequence-specific transcriptional repressor. ...
AbstractBackground: The organization of chromatin is crucial for the regulation of gene expression. ...
AbstractBackground: The organization of chromatin is crucial for the regulation of gene expression. ...
AbstractAn important event in gene expression is the covalent modification of histone proteins. We h...
nucleosomes, which form the basic re-peating units of chromatin1. More than thirty years ago it was ...
AbstractGene-specific targeting of the Sin3 corepressor complex by DNA-bound repressors is an import...
SummaryThe yeast histone deacetylase Rpd3 can be recruited to promoters to repress transcription ini...
SummaryThe yeast histone deacetylase Rpd3 can be recruited to promoters to repress transcription ini...
AbstractTranscriptional repression by Mad–Max heterodimers requires interaction of Mad with the core...
AbstractMembers of the Mad family of bHLH-Zip proteins heterodimerize with Max to repress transcript...
AbstractThe bHLH-ZIP protein Mad heterodimerizes with Max as a sequence-specific transcriptional rep...
Transcriptional repression by Mad-Max heterodimers requires interaction of Mad with the corepressors...
AbstractTranscriptional repression by Mad–Max heterodimers requires interaction of Mad with the core...
AbstractMad proteins are transcriptional repressors that antagonize transcriptional activation and t...
AbstractThe bHLH-ZIP protein Mad heterodimerizes with Max as a sequence-specific transcriptional rep...
The bHLH-ZIP protein Mad heterodimerizes with Max as a sequence-specific transcriptional repressor. ...
AbstractBackground: The organization of chromatin is crucial for the regulation of gene expression. ...
AbstractBackground: The organization of chromatin is crucial for the regulation of gene expression. ...
AbstractAn important event in gene expression is the covalent modification of histone proteins. We h...
nucleosomes, which form the basic re-peating units of chromatin1. More than thirty years ago it was ...
AbstractGene-specific targeting of the Sin3 corepressor complex by DNA-bound repressors is an import...
SummaryThe yeast histone deacetylase Rpd3 can be recruited to promoters to repress transcription ini...
SummaryThe yeast histone deacetylase Rpd3 can be recruited to promoters to repress transcription ini...