Transcription of protein-encoding genes in eukaryotes is a highly regulated process that is initiated when a myriad of transcriptional activators recognize specific DNA elements proximal and distal to core promoters. These DNA bound activators then direct the dynamic assembly of RNA polymerase II, general transcription factors, and cofactor complexes on promoter DNA to initiate transcription. As the exact sequence of events needed to initiate transcription is poorly understood, a mechanistic understanding of how transcription activators regulate and direct transcription complex formation from their proximal and distant recognition sites is crucial to understanding how genes expression is regulated. Toward a better understanding of the mechanism of RNAPII mediated transcription we will develop and apply single molecule techniques to (i) measure the rates and the sequence by which the GTFs and RNAPII bind to promoter DNA, (ii) determine how the rates and the sequence by which the GTFs and RNAPII bind to promoter DNA are modulated by transcriptional activators and co- activators, and (iii) determine how activation occurs by distal enhancers. Information on dynamics of transcription initiation obtained in these single-molecule studies will complement the structural information obtained by the proposed biochemical, EM, and x-ray crystallographic studies of this PPG. Mechanistic understanding of transcription complex formation will provide new potential protein targets for anticancer therapies.
He, Yuan; Fang, Jie; Taatjes, Dylan J et al. (2013) Structural visualization of key steps in human transcription initiation. Nature 495:481-6 |
Revyakin, Andrey; Zhang, Zhengjian; Coleman, Robert A et al. (2012) Transcription initiation by human RNA polymerase II visualized at single-molecule resolution. Genes Dev 26:1691-702 |
Fong, Yick W; Cattoglio, Claudia; Yamaguchi, Teppei et al. (2012) Transcriptional regulation by coactivators in embryonic stem cells. Trends Cell Biol 22:292-8 |
Bernecky, Carrie; Grob, Patricia; Ebmeier, Christopher C et al. (2011) Molecular architecture of the human Mediator-RNA polymerase II-TFIIF assembly. PLoS Biol 9:e1000603 |
De Carlo, Sacha; Lin, Shih-Chieh; Taatjes, Dylan J et al. (2010) Molecular basis of transcription initiation in Archaea. Transcription 1:103-11 |
Donner, Aaron J; Ebmeier, Christopher C; Taatjes, Dylan J et al. (2010) CDK8 is a positive regulator of transcriptional elongation within the serum response network. Nat Struct Mol Biol 17:194-201 |
Knuesel, Matthew T; Meyer, Krista D; Bernecky, Carrie et al. (2009) The human CDK8 subcomplex is a molecular switch that controls Mediator coactivator function. Genes Dev 23:439-51 |
D'Alessio, Joseph A; Wright, Kevin J; Tjian, Robert (2009) Shifting players and paradigms in cell-specific transcription. Mol Cell 36:924-31 |
Liu, Wei-Li; Coleman, Robert A; Ma, Elizabeth et al. (2009) Structures of three distinct activator-TFIID complexes. Genes Dev 23:1510-21 |
Knuesel, Matthew T; Meyer, Krista D; Donner, Aaron J et al. (2009) The human CDK8 subcomplex is a histone kinase that requires Med12 for activity and can function independently of mediator. Mol Cell Biol 29:650-61 |
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