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The conserved foot domain of RNA pol II associates with proteins involved in transcriptional initiation and/or early elongation.


ABSTRACT: RNA polymerase (pol) II establishes many protein-protein interactions with transcriptional regulators to coordinate different steps of transcription. Although some of these interactions have been well described, little is known about the existence of RNA pol II regions involved in contact with transcriptional regulators. We hypothesize that conserved regions on the surface of RNA pol II contact transcriptional regulators. We identified such an RNA pol II conserved region that includes the majority of the "foot" domain and identified interactions of this region with Mvp1, a protein required for sorting proteins to the vacuole, and Spo14, a phospholipase D. Deletion of MVP1 and SPO14 affects the transcription of their target genes and increases phosphorylation of Ser5 in the carboxy-terminal domain (CTD). Genetic, phenotypic, and functional analyses point to a role for these proteins in transcriptional initiation and/or early elongation, consistent with their genetic interactions with CEG1, a guanylyltransferase subunit of the Saccharomyces cerevisiae capping enzyme.

SUBMITTER: Garcia-Lopez MC 

PROVIDER: S-EPMC3241420 | biostudies-literature | 2011 Dec

REPOSITORIES: biostudies-literature

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The conserved foot domain of RNA pol II associates with proteins involved in transcriptional initiation and/or early elongation.

García-López M Carmen MC   Pelechano Vicent V   Mirón-García M Carmen MC   Garrido-Godino Ana I AI   García Alicia A   Calvo Olga O   Werner Michel M   Pérez-Ortín José E JE   Navarro Francisco F  

Genetics 20110927 4


RNA polymerase (pol) II establishes many protein-protein interactions with transcriptional regulators to coordinate different steps of transcription. Although some of these interactions have been well described, little is known about the existence of RNA pol II regions involved in contact with transcriptional regulators. We hypothesize that conserved regions on the surface of RNA pol II contact transcriptional regulators. We identified such an RNA pol II conserved region that includes the majori  ...[more]

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