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Transcription elongation is finely tuned by dozens of regulatory factors
by
Harlen, Kevin M
, Brion, Christian
, Smalec, Brendan M
, Lachance, Kate C
, Trotta, Kristine L
, Churchman, L Stirling
, Couvillion, Mary
, Smith, Erin
in
Analysis
/ Antisense DNA
/ Antisense RNA
/ antisense transcription
/ Base Sequence
/ Chromatin
/ Chromosomes and Gene Expression
/ DNA sequencing
/ DNA-directed RNA polymerase
/ Gene expression
/ Genes
/ Genetic transcription
/ Genetics and Genomics
/ Genomes
/ Nucleotide sequence
/ Nucleotide sequencing
/ Ontology
/ Pol II pausing
/ Proteins
/ Regulatory sequences
/ RNA
/ RNA polymerase
/ RNA Polymerase II - genetics
/ RNA Polymerase II - metabolism
/ RNA processing
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Tools and Resources
/ Transcription elongation
/ Transcription factors
/ Transcription, Genetic
/ Transcriptional Elongation Factors - genetics
/ Yeast
2022
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Transcription elongation is finely tuned by dozens of regulatory factors
by
Harlen, Kevin M
, Brion, Christian
, Smalec, Brendan M
, Lachance, Kate C
, Trotta, Kristine L
, Churchman, L Stirling
, Couvillion, Mary
, Smith, Erin
in
Analysis
/ Antisense DNA
/ Antisense RNA
/ antisense transcription
/ Base Sequence
/ Chromatin
/ Chromosomes and Gene Expression
/ DNA sequencing
/ DNA-directed RNA polymerase
/ Gene expression
/ Genes
/ Genetic transcription
/ Genetics and Genomics
/ Genomes
/ Nucleotide sequence
/ Nucleotide sequencing
/ Ontology
/ Pol II pausing
/ Proteins
/ Regulatory sequences
/ RNA
/ RNA polymerase
/ RNA Polymerase II - genetics
/ RNA Polymerase II - metabolism
/ RNA processing
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Tools and Resources
/ Transcription elongation
/ Transcription factors
/ Transcription, Genetic
/ Transcriptional Elongation Factors - genetics
/ Yeast
2022
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Transcription elongation is finely tuned by dozens of regulatory factors
by
Harlen, Kevin M
, Brion, Christian
, Smalec, Brendan M
, Lachance, Kate C
, Trotta, Kristine L
, Churchman, L Stirling
, Couvillion, Mary
, Smith, Erin
in
Analysis
/ Antisense DNA
/ Antisense RNA
/ antisense transcription
/ Base Sequence
/ Chromatin
/ Chromosomes and Gene Expression
/ DNA sequencing
/ DNA-directed RNA polymerase
/ Gene expression
/ Genes
/ Genetic transcription
/ Genetics and Genomics
/ Genomes
/ Nucleotide sequence
/ Nucleotide sequencing
/ Ontology
/ Pol II pausing
/ Proteins
/ Regulatory sequences
/ RNA
/ RNA polymerase
/ RNA Polymerase II - genetics
/ RNA Polymerase II - metabolism
/ RNA processing
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Tools and Resources
/ Transcription elongation
/ Transcription factors
/ Transcription, Genetic
/ Transcriptional Elongation Factors - genetics
/ Yeast
2022
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Transcription elongation is finely tuned by dozens of regulatory factors
Journal Article
Transcription elongation is finely tuned by dozens of regulatory factors
2022
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Overview
Understanding the complex network that regulates transcription elongation requires the quantitative analysis of RNA polymerase II (Pol II) activity in a wide variety of regulatory environments. We performed native elongating transcript sequencing (NET-seq) in 41 strains of Saccharomyces cerevisiae lacking known elongation regulators, including RNA processing factors, transcription elongation factors, chromatin modifiers, and remodelers. We found that the opposing effects of these factors balance transcription elongation and antisense transcription. Different sets of factors tightly regulate Pol II progression across gene bodies so that Pol II density peaks at key points of RNA processing. These regulators control where Pol II pauses with each obscuring large numbers of potential pause sites that are primarily determined by DNA sequence and shape. Antisense transcription varies highly across the regulatory landscapes analyzed, but antisense transcription in itself does not affect sense transcription at the same locus. Our findings collectively show that a diverse array of factors regulate transcription elongation by precisely balancing Pol II activity.
Publisher
eLife Science Publications, Ltd,eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
Subject
/ Chromosomes and Gene Expression
/ Genes
/ Genomes
/ Ontology
/ Proteins
/ RNA
/ RNA Polymerase II - genetics
/ RNA Polymerase II - metabolism
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Transcriptional Elongation Factors - genetics
/ Yeast
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