Literature DB >> 31092540

The Paf1 Complex Broadly Impacts the Transcriptome of Saccharomyces cerevisiae.

Mitchell A Ellison1, Alex R Lederer1, Marcie H Warner1, Travis N Mavrich1, Elizabeth A Raupach1, Lawrence E Heisler2, Corey Nislow3, Miler T Lee1, Karen M Arndt4.   

Abstract

The Polymerase Associated Factor 1 complex (Paf1C) is a multifunctional regulator of eukaryotic gene expression important for the coordination of transcription with chromatin modification and post-transcriptional processes. In this study, we investigated the extent to which the functions of Paf1C combine to regulate the Saccharomyces cerevisiae transcriptome. While previous studies focused on the roles of Paf1C in controlling mRNA levels, here, we took advantage of a genetic background that enriches for unstable transcripts, and demonstrate that deletion of PAF1 affects all classes of Pol II transcripts including multiple classes of noncoding RNAs (ncRNAs). By conducting a de novo differential expression analysis independent of gene annotations, we found that Paf1 positively and negatively regulates antisense transcription at multiple loci. Comparisons with nascent transcript data revealed that many, but not all, changes in RNA levels detected by our analysis are due to changes in transcription instead of post-transcriptional events. To investigate the mechanisms by which Paf1 regulates protein-coding genes, we focused on genes involved in iron and phosphate homeostasis, which were differentially affected by PAF1 deletion. Our results indicate that Paf1 stimulates phosphate gene expression through a mechanism that is independent of any individual Paf1C-dependent histone modification. In contrast, the inhibition of iron gene expression by Paf1 correlates with a defect in H3 K36 trimethylation. Finally, we showed that one iron regulon gene, FET4, is coordinately controlled by Paf1 and transcription of upstream noncoding DNA. Together, these data identify roles for Paf1C in controlling both coding and noncoding regions of the yeast genome.
Copyright © 2019 by the Genetics Society of America.

Entities:  

Keywords:  Paf1 complex; RNA polymerase II; chromatin; histone modifications; noncoding RNA

Mesh:

Substances:

Year:  2019        PMID: 31092540      PMCID: PMC6614894          DOI: 10.1534/genetics.119.302262

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  110 in total

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5.  Ubiquitination of histone H2B regulates H3 methylation and gene silencing in yeast.

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7.  The FET4 gene encodes the low affinity Fe(II) transport protein of Saccharomyces cerevisiae.

Authors:  D R Dix; J T Bridgham; M A Broderius; C A Byersdorfer; D J Eide
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Authors:  J Michael Cherry; Eurie L Hong; Craig Amundsen; Rama Balakrishnan; Gail Binkley; Esther T Chan; Karen R Christie; Maria C Costanzo; Selina S Dwight; Stacia R Engel; Dianna G Fisk; Jodi E Hirschman; Benjamin C Hitz; Kalpana Karra; Cynthia J Krieger; Stuart R Miyasato; Rob S Nash; Julie Park; Marek S Skrzypek; Matt Simison; Shuai Weng; Edith D Wong
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  4 in total

Review 1.  The Paf1 Complex: A Keystone of Nuclear Regulation Operating at the Interface of Transcription and Chromatin.

Authors:  Alex M Francette; Sarah A Tripplehorn; Karen M Arndt
Journal:  J Mol Biol       Date:  2021-04-01       Impact factor: 6.151

2.  Altered rRNA processing disrupts nuclear RNA homeostasis via competition for the poly(A)-binding protein Nab2.

Authors:  Lisbeth-Carolina Aguilar; Biplab Paul; Taylor Reiter; Louis Gendron; Arvind Arul Nambi Rajan; Rachel Montpetit; Christian Trahan; Sebastian Pechmann; Marlene Oeffinger; Ben Montpetit
Journal:  Nucleic Acids Res       Date:  2020-11-18       Impact factor: 16.971

Review 3.  Contribution of Model Organisms to Investigating the Far-Reaching Consequences of PRPP Metabolism on Human Health and Well-Being.

Authors:  Eziuche A Ugbogu; Lilian M Schweizer; Michael Schweizer
Journal:  Cells       Date:  2022-06-13       Impact factor: 7.666

4.  The nucleosome DNA entry-exit site is important for transcription termination and prevention of pervasive transcription.

Authors:  A Elizabeth Hildreth; Mitchell A Ellison; Alex M Francette; Julia M Seraly; Lauren M Lotka; Karen M Arndt
Journal:  Elife       Date:  2020-08-26       Impact factor: 8.140

  4 in total

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