Other

Dataset Information

0

The binding specificity and regulatory effect of WT and redesigned Puf2p [CLIP-Seq]


ABSTRACT: PUF proteins have become a leading scaffold for designing RNA-binding proteins to contact and control RNAs at will. We analyze the effects of that reengineering across the transcriptome in vivo for the first time. We show, by HITS-CLIP and PAR-CLIP, that S. cerevisiae Puf2p, a non-canonical PUF protein, binds more than 1000 mRNA targets. Puf2p binds multiple UAAU elements, unlike canonical PUF proteins. We also perform CLIP-seq on truncations of the Puf2p, showing that its prion domain is dispensable for WT binding. We design a modified Puf2p to bind UAAG rather than UAAU, which allows us to align the protein with the binding site. In vivo, the redesigned protein binds UAAG sites. Its altered specificity redistributes the protein away from 3’UTRs, such that the protein tracks with its sites, binds throughout the mRNA. We use RNA-seq to determine that R1 SNE Puf2p represses a novel RNA network. 

ORGANISM(S): Saccharomyces cerevisiae

PROVIDER: GSE73273 | GEO | 2015/12/15

SECONDARY ACCESSION(S): PRJNA296506

REPOSITORIES: GEO

Similar Datasets

2015-12-15 | E-GEOD-73273 | biostudies-arrayexpress
2015-12-15 | E-GEOD-73227 | biostudies-arrayexpress
2015-12-15 | GSE73227 | GEO
2016-05-11 | GSE76136 | GEO
2006-03-07 | E-GEOD-4393 | biostudies-arrayexpress
2011-05-15 | E-GEOD-28859 | biostudies-arrayexpress
2008-05-01 | GSE11301 | GEO
2008-05-01 | E-GEOD-11301 | biostudies-arrayexpress
2011-05-15 | GSE28864 | GEO
2011-05-15 | GSE28859 | GEO