Web supplement to
"A library of yeast transcription factor motifs reveals a widespread function for Rsc3 in targeting nucleosome exclusion at promoters"

Gwenael Badis, Esther T. Chan, Harm van Bakel, Lourdes Peña-Castillo, Desiree Tillo, Kyle Tsui, Clayton D. Carlson, Andrea J. Gossett, Michael J. Hasinoff, Christopher L. Warren, Marinella Gebbia, Shaheynoor Talukder, Ally Yang, Sanie Mnaimneh, Dimitri Terterov, David Coburn, Ai Li Yeo, Zhen Xuan Yeo, Neil D. Clarke, Jason D. Lieb, Aseem Z. Ansari, Corey Nislow, and Timothy R. Hughes*

*To whom correspondance should be addressed:

Abstract

The sequence specificity of DNA-binding proteins is the primary mechanism by which the cell recognizes genomic features. Here, we describe systematic determination of yeast transcription factor DNA-binding specificities. We obtained binding specificities for 112 DNA-binding proteins representing 19 distinct structural classes. One-third of the binding specificities have not been previously reported. Several binding sequences have striking genomic distributions relative to transcription start sites, supporting their biological relevance and suggesting a role in promoter architecture. Among these are Rsc3 binding sequences, containing the core CGCG, which are found preferentially ∼100 bp upstream of transcription start sites. Mutation of RSC3 results in a dramatic increase in nucleosome occupancy in hundreds of proximal promoters containing a Rsc3 binding element, but has little impact on promoters lacking Rsc3 binding sequences, indicating that Rsc3 plays a broad role in targeting nucleosome exclusion at yeast promoters.

Paper supplement

Yeast DBD library

PBM array data

8-mer data

Position-weight Matrices (PWMs)

DIP-chip data

CSI data

ChIP-chip data

Nucleosome and transcription data

Strains used in this paper