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Wednesday 08th of February 2012
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Citations for 'Identification of novel functional TBP-binding sites and general factor repertoires'
Cited: Identification of novel functional TBP-binding sites and general factor repertoires
The RNA polymerase i transcription machinery
Death receptor pathway activation and increase of ROS production by the triple epigenetic inhibitor UVI5008
Coactivation of GR and NFKB alters the repertoire of their binding sites and target genes
Role of p53 Serine 46 in p53 target gene regulation
A model for the topology of active ribosomal RNA genes
Nucleotide composition-linked divergence of vertebrate core promoter architecture
Targeting RNA polymerase I with an oral small molecule CX-5461 inhibits ribosomal RNA synthesis and solid tumor growth
Genome-wide profiling of p63 DNA-binding sites identifies an element that regulates gene expression during limb development in the 7q21 shfm1 locus
H2A.Z maintenance during mitosis reveals nucleosome shifting on mitotically silenced genes
Quantitative Interaction Proteomics and Genome-wide Profiling of Epigenetic Histone Marks and Their Readers
Genome-wide assessment of differential roles for p300 and CBP in transcription regulation
PPARγ in adipocyte differentiation and metabolism - Novel insights from genome-wide studies
Defining the RNA polymerase III transcriptome: Genome-wide localization of the RNA polymerase III transcription machinery in human cells
Cooperation between the transcription factors p63 and IRF6 is essential to prevent cleft palate in mice
PML-RARα/RXR Alters the Epigenetic Landscape in Acute Promyelocytic Leukemia
In silico and biological survey of transcription-associated proteins implicated in the transcriptional machinery during the erythrocytic development of Plasmodium falciparum
Selective class II HDAC inhibitors impair myogenesis by modulating the stability and activity of HDAC-MEF2 complexes
The basal initiation machinery: beyond the general transcription factors
Histone acetylations mark origins of polycistronic transcription in Leishmania major
A novel activity enhances promoter escape of RNA polymerase I
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