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High-resolution, genome-wide mapping of positive supercoiling in chromosomes
by
Laub, Michael T
, Marko, John F
, Littlehale, Megan L
, Guo, Monica S
, Kawamura, Ryo
in
Analysis
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Binding Sites
/ Cell Cycle Proteins
/ Centromeres
/ Chromatin
/ Chromatin Immunoprecipitation
/ Chromosomal Proteins, Non-Histone
/ chromosome structure
/ Chromosome Structures
/ Chromosomes
/ Chromosomes - metabolism
/ Chromosomes and Gene Expression
/ Chromosomes, Bacterial
/ Cohesin
/ Cohesins
/ Computer software industry
/ Crystal structure
/ Deoxyribonucleic acid
/ DNA
/ DNA - metabolism
/ DNA biosynthesis
/ DNA Replication
/ DNA, Bacterial
/ Escherichia coli
/ Escherichia coli - genetics
/ Experiments
/ gene expression
/ Gene mapping
/ Genes
/ Genetic transcription
/ Genomes
/ Genomics
/ Hybrids
/ Immunoprecipitation
/ Peptide mapping
/ Protein Binding
/ R-loops
/ RNA
/ RNA polymerase
/ Saccharomyces cerevisiae - genetics
/ Supercoiling
/ Transcription
/ Transcription, Genetic
2021
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High-resolution, genome-wide mapping of positive supercoiling in chromosomes
by
Laub, Michael T
, Marko, John F
, Littlehale, Megan L
, Guo, Monica S
, Kawamura, Ryo
in
Analysis
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Binding Sites
/ Cell Cycle Proteins
/ Centromeres
/ Chromatin
/ Chromatin Immunoprecipitation
/ Chromosomal Proteins, Non-Histone
/ chromosome structure
/ Chromosome Structures
/ Chromosomes
/ Chromosomes - metabolism
/ Chromosomes and Gene Expression
/ Chromosomes, Bacterial
/ Cohesin
/ Cohesins
/ Computer software industry
/ Crystal structure
/ Deoxyribonucleic acid
/ DNA
/ DNA - metabolism
/ DNA biosynthesis
/ DNA Replication
/ DNA, Bacterial
/ Escherichia coli
/ Escherichia coli - genetics
/ Experiments
/ gene expression
/ Gene mapping
/ Genes
/ Genetic transcription
/ Genomes
/ Genomics
/ Hybrids
/ Immunoprecipitation
/ Peptide mapping
/ Protein Binding
/ R-loops
/ RNA
/ RNA polymerase
/ Saccharomyces cerevisiae - genetics
/ Supercoiling
/ Transcription
/ Transcription, Genetic
2021
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Do you wish to request the book?
High-resolution, genome-wide mapping of positive supercoiling in chromosomes
by
Laub, Michael T
, Marko, John F
, Littlehale, Megan L
, Guo, Monica S
, Kawamura, Ryo
in
Analysis
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Binding Sites
/ Cell Cycle Proteins
/ Centromeres
/ Chromatin
/ Chromatin Immunoprecipitation
/ Chromosomal Proteins, Non-Histone
/ chromosome structure
/ Chromosome Structures
/ Chromosomes
/ Chromosomes - metabolism
/ Chromosomes and Gene Expression
/ Chromosomes, Bacterial
/ Cohesin
/ Cohesins
/ Computer software industry
/ Crystal structure
/ Deoxyribonucleic acid
/ DNA
/ DNA - metabolism
/ DNA biosynthesis
/ DNA Replication
/ DNA, Bacterial
/ Escherichia coli
/ Escherichia coli - genetics
/ Experiments
/ gene expression
/ Gene mapping
/ Genes
/ Genetic transcription
/ Genomes
/ Genomics
/ Hybrids
/ Immunoprecipitation
/ Peptide mapping
/ Protein Binding
/ R-loops
/ RNA
/ RNA polymerase
/ Saccharomyces cerevisiae - genetics
/ Supercoiling
/ Transcription
/ Transcription, Genetic
2021
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High-resolution, genome-wide mapping of positive supercoiling in chromosomes
Journal Article
High-resolution, genome-wide mapping of positive supercoiling in chromosomes
2021
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Overview
Supercoiling impacts DNA replication, transcription, protein binding to DNA, and the three-dimensional organization of chromosomes. However, there are currently no methods to directly interrogate or map positive supercoils, so their distribution in genomes remains unknown. Here, we describe a method, GapR-seq, based on the chromatin immunoprecipitation of GapR, a bacterial protein that preferentially recognizes overtwisted DNA, for generating high-resolution maps of positive supercoiling. Applying this method to Escherichia coli and Saccharomyces cerevisiae , we find that positive supercoiling is widespread, associated with transcription, and particularly enriched between convergently oriented genes, consistent with the ‘twin-domain’ model of supercoiling. In yeast, we also find positive supercoils associated with centromeres, cohesin-binding sites, autonomously replicating sites, and the borders of R-loops (DNA-RNA hybrids). Our results suggest that GapR-seq is a powerful approach, likely applicable in any organism, to investigate aspects of chromosome structure and organization not accessible by Hi-C or other existing methods.
Publisher
eLife Science Publications, Ltd,eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
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