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PMID: 8552095 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Paf1p, an RNA polymerase II-associated factor in Saccharomyces cerevisiae, may have both positive and negative roles in transcription.

Molecular and cellular biology ·Vol. 16 ·No. 2 ·1996-02-00 ·Pages 669-76

Shi X, Finkelstein A, Wolf AJ, Wade PA, Burton ZF, Jaehning JA

Abstract

Regulated transcription initiation requires, in addition to RNA polymerase II and the general transcription factors, accessory factors termed mediators or adapters. We have used affinity chromatography to identify a collection of factors that associate with Saccharomyces cerevisiae RNA polymerase II (P. A. Wade, W. Werel, R. C. Fentzke, N. E. Thompson, J. F. Leykam, R. R. Burgess, J. A. Jaehning, and Z. F. Burton, submitted for publication). Here we report identification and characterization of a gene encoding one of these factors, PAF1 (for RNA polymerase-associated factor 1). PAF1 encodes a novel, highly charged protein of 445 amino acids. Disruption of PAF1 in S. cerevisiae leads to pleiotropic phenotypic traits, including slow growth, temperature sensitivity, and abnormal cell morphology. Consistent with a possible role in transcription, Paf1p is localized to the nucleus. By comparing the abundances of many yeast transcripts in isogenic wild-type and paf1 mutant strains, we have identified genes whose expression is affected by PAF1. In particular, disruption of PAF1 decreases the induction of the galactose-regulated genes three- to fivefold. In contrast, the transcript level of MAK16, an essential gene involved in cell cycle regulation, is greatly increased in the paf1 mutant strain. Paf1p may therefore be required for both positive and negative regulation of subsets of yeast genes. Like Paf1p, the GAL11 gene product is found associated with RNA polymerase II and is required for regulated expression of many yeast genes including those controlled by galactose. We have found that a gal11 paf1 double mutant has a much more severe growth defect than either of the single mutants, indicating that these two proteins may function in parallel pathways to communicate signals from regulatory factors to RNA polymerase II.

MeSH Terms
Amino Acid Sequence Base Sequence Cell Cycle Proteins Cell Nucleus/chemistry Cloning, Molecular Fungal Proteins/genetics,isolation & purification,metabolism Galactose/pharmacology Gene Expression Regulation, Fungal Genes, Fungal Genes, Lethal Mediator Complex Molecular Sequence Data Mutagenesis Nuclear Proteins/genetics,immunology,metabolism Phenotype Protein Binding RNA Polymerase II/metabolism Saccharomyces cerevisiae/enzymology,genetics,growth & development Saccharomyces cerevisiae Proteins Sequence Analysis, DNA Trans-Activators Transcription Factors/genetics Transcription, Genetic
Chemicals
Cell Cycle Proteins Fungal Proteins GAL11 protein, S cerevisiae MAK16 protein, S cerevisiae Mediator Complex Nuclear Proteins PAF1 protein, S cerevisiae Saccharomyces cerevisiae Proteins Trans-Activators Transcription Factors RNA Polymerase II Galactose
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Shi X
Department of Biochemistry, Biophysics and Genetics, University of Colorado Health Sciences Center, Denver 80262, USA.
Finkelstein A
Wolf A J
Wade P A
Burton Z F
Jaehning J A
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Article Info
Journal
Molecular and cellular biology
Abbr.
Mol Cell Biol
ISSN
0270-7306
Published
1996-02-00
Pages
669-76
Language
English
Region
United States
NLM ID
8109087
PMCID
PMC231046
Subset
IM
Grants
NIGMS NIH HHS · R01 GM38101 · United States
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