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Links from GEO DataSets

Items: 20

1.

A compendium of nucleosome and transcript profiles reveals determinants of chromatin architecture and transcription [transcript profiling]

(Submitter supplied) Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and play fundamental roles in regulating transcription, yet the identity and precise roles of many of the trans-acting factors responsible for the establishment and maintenance of this organization remain to be identified. We profiled a compendium of 50 yeast strains carrying conditional alleles or complete deletions of genes involved in transcriptional regulation, histone biology and chromatin remodeling, as well as compounds that target transcription and histone deacetylases, to assess their respective roles in nucleosome positioning and transcription. more...
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by genome tiling array
Platform:
GPL7070
62 Samples
Download data: BAR, CEL
Series
Accession:
GSE44876
ID:
200044876
2.

A compendium of nucleosome and transcript profiles reveals determinants of chromatin architecture and transcription

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by genome tiling array; Genome binding/occupancy profiling by genome tiling array; Genome binding/occupancy profiling by high throughput sequencing
Platforms:
GPL9377 GPL7070
185 Samples
Download data: BAR, CEL, WIG
Series
Accession:
GSE44879
ID:
200044879
3.

A compendium of nucleosome and transcript profiles reveals determinants of chromatin architecture and transcription [Nuc-Seq]

(Submitter supplied) Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and play fundamental roles in regulating transcription, yet the identity and precise roles of many of the trans-acting factors responsible for the establishment and maintenance of this organization remain to be identified. We profiled a compendium of 50 yeast strains carrying conditional alleles or complete deletions of genes involved in transcriptional regulation, histone biology and chromatin remodeling, as well as compounds that target transcription and histone deacetylases, to assess their respective roles in nucleosome positioning and transcription. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL9377
16 Samples
Download data: WIG
Series
Accession:
GSE44878
ID:
200044878
4.

A compendium of nucleosome and transcript profiles reveals determinants of chromatin architecture and transcription [nucleosome profiling]

(Submitter supplied) Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and play fundamental roles in regulating transcription, yet the identity and precise roles of many of the trans-acting factors responsible for the establishment and maintenance of this organization remain to be identified. We profiled a compendium of 50 yeast strains carrying conditional alleles or complete deletions of genes involved in transcriptional regulation, histone biology and chromatin remodeling, as well as compounds that target transcription and histone deacetylases, to assess their respective roles in nucleosome positioning and transcription. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array
Platform:
GPL7070
107 Samples
Download data: BAR, CEL
Series
Accession:
GSE44877
ID:
200044877
5.

Effects of Histone H3 depletion on nucleosome occupancy and positioning through the S. cerevisiae genome

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing; Expression profiling by high throughput sequencing
Platform:
GPL13272
20 Samples
Download data: BED, TXT, WIG
Series
Accession:
GSE29294
ID:
200029294
6.

Effects of Histone H3 depletion on nucleosome occupancy and positioning through the S. cerevisiae genome [RNA_seq]

(Submitter supplied) Experiments performed over the past three decades have shown that nucleosomes are transcriptional repressors. In Saccharomyces cerevisiae, depletion of histone H4 results in the genome-wide transcriptional de-repression of hundreds genes. The mechanism of de-repression is hypothesized to be rooted directly in chromatin changes. To test this, we reproduced classical H4 depletion experiments by conditional repression of all histone H3 transcription, which depletes the supply of nucleosomes in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by high throughput sequencing
Platform:
GPL13272
6 Samples
Download data: WIG
Series
Accession:
GSE29293
ID:
200029293
7.

Effects of Histone H3 depletion on nucleosome occupancy and positioning through the S. cerevisiae genome [Paired-end Mnase-seq]

(Submitter supplied) Experiments performed over the past three decades have shown that nucleosomes are transcriptional repressors. In Saccharomyces cerevisiae, depletion of histone H4 results in the genome-wide transcriptional de-repression of hundreds genes. The mechanism of de-repression is hypothesized to be rooted directly in chromatin changes. To test this, we reproduced classical H4 depletion experiments by conditional repression of all histone H3 transcription, which depletes the supply of nucleosomes in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL13272
8 Samples
Download data: BED, TXT
Series
Accession:
GSE29292
ID:
200029292
8.

Effects of Histone H3 depletion on nucleosome occupancy and positioning through the S. cerevisiae genome [single-end MNase-seq]

(Submitter supplied) Experiments performed over the past three decades have shown that nucleosomes are transcriptional repressors. In Saccharomyces cerevisiae, depletion of histone H4 results in the genome-wide transcriptional de-repression of hundreds genes. The mechanism of de-repression is hypothesized to be rooted directly in chromatin changes. To test this, we reproduced classical H4 depletion experiments by conditional repression of all histone H3 transcription, which depletes the supply of nucleosomes in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL13272
6 Samples
Download data: BED, TXT
Series
Accession:
GSE29291
ID:
200029291
9.

Chromatin Remodeler Ino80C acts independently of H2A.Z to evict promoter nucleosomes and stimulate transcription of highly expressed genes in yeast

(Submitter supplied) The chromatin remodelers (CRs) SWI/SNF and RSC function in evicting promoter nucleosomes at highly expressed yeast genes, particularly those activated by transcription factor Gcn4. Ino80 remodeling complex (Ino80C) can establish nucleosome-depleted regions (NDRs) in reconstituted chromatin, and was implicated in removing histone variant H2A.Z from the -1 and +1 nucleosomes flanking NDRs; however, Ino80C’s function in transcriptional activation in vivo is not well understood. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL23014
101 Samples
Download data: BW
Series
Accession:
GSE142273
ID:
200142273
10.

Genomic nucleosome organization reconstituted with pure proteins

(Submitter supplied) Chromatin remodelers regulate genes by organizing nucleosomes around promoters, but their individual contributions are obfuscated by the complex in vivo milieu of factor redundancy and indirect effects. Genome-wide reconstitution of promoter nucleosome organization with purified proteins resolves this problem and is therefore a critical goal. Here we reconstitute four stages of nucleosome architecture using purified components: Yeast genomic DNA, histones, sequence-specific Abf1/Reb1, and remodelers RSC, ISW2, INO80, and ISW1a. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platforms:
GPL19756 GPL18085 GPL13821
92 Samples
Download data: BEDGRAPH, TXT
Series
Accession:
GSE72106
ID:
200072106
11.

The Chromatin Remodelers RSC and ISW1 Display Functional and Chromatin-based Promoter Antagonism

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array; Expression profiling by genome tiling array; Genome binding/occupancy profiling by high throughput sequencing
4 related Platforms
21 Samples
Download data: BW, TXT
Series
Accession:
GSE65594
ID:
200065594
12.

RSC and ISW1 Chromatin Remodelers Display Functional and Chromatin-based Promoter Antagonism [MNase-Seq]

(Submitter supplied) ISWI-family chromatin remodelers organize nucleosome arrays, while SWI/SNF-family remodelers (RSC) disorganize and eject nucleosomes, implying an antagonism that is largely unexplored in vivo. Here, we describe two independent genetic screens for rsc suppressors that yielded mutations in the promoter-focused ISW1a complex, or mutations in the ‘basic patch’ of histone H4 (an epitope that regulates ISWI activity), strongly supporting RSC-ISW1a antagonism in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL13821
2 Samples
Download data: BW
Series
Accession:
GSE65593
ID:
200065593
13.

RSC and ISW1 Chromatin Remodelers Display Functional and Chromatin-based Promoter Antagonism [ChIP-seq]

(Submitter supplied) ISWI-family chromatin remodelers organize nucleosome arrays, while SWI/SNF-family remodelers (RSC) disorganize and eject nucleosomes, implying an antagonism that is largely unexplored in vivo. Here, we describe two independent genetic screens for rsc suppressors that yielded mutations in the promoter-focused ISW1a complex, or mutations in the ‘basic patch’ of histone H4 (an epitope that regulates ISWI activity), strongly supporting RSC-ISW1a antagonism in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platforms:
GPL13821 GPL13272
7 Samples
Download data: BW
Series
Accession:
GSE65592
ID:
200065592
14.

RSC and ISW1 Chromatin Remodelers Display Functional and Chromatin-based Promoter Antagonism [HybMap microarray]

(Submitter supplied) ISWI-family chromatin remodelers organize nucleosome arrays, while SWI/SNF-family remodelers (RSC) disorganize and eject nucleosomes, implying an antagonism that is largely unexplored in vivo. Here, we describe two independent genetic screens for rsc suppressors that yielded mutations in the promoter-focused ISW1a complex, or mutations in the ‘basic patch’ of histone H4 (an epitope that regulates ISWI activity), strongly supporting RSC-ISW1a antagonism in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by genome tiling array
Platform:
GPL19733
6 Samples
Download data: TXT
Series
Accession:
GSE65591
ID:
200065591
15.

RSC and ISW1 Chromatin Remodelers Display Functional and Chromatin-based Promoter Antagonism [nucleosome occupancy]

(Submitter supplied) ISWI-family chromatin remodelers organize nucleosome arrays, while SWI/SNF-family remodelers (RSC) disorganize and eject nucleosomes, implying an antagonism that is largely unexplored in vivo. Here, we describe two independent genetic screens for rsc suppressors that yielded mutations in the promoter-focused ISW1a complex, or mutations in the ‘basic patch’ of histone H4 (an epitope that regulates ISWI activity), strongly supporting RSC-ISW1a antagonism in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array
Platform:
GPL4130
2 Samples
Download data: TXT
Series
Accession:
GSE65590
ID:
200065590
16.

RSC and ISW1 Chromatin Remodelers Display Functional and Chromatin-based Promoter Antagonism [ChIP-chip]

(Submitter supplied) ISWI-family chromatin remodelers organize nucleosome arrays, while SWI/SNF-family remodelers (RSC) disorganize and eject nucleosomes, implying an antagonism that is largely unexplored in vivo. Here, we describe two independent genetic screens for rsc suppressors that yielded mutations in the promoter-focused ISW1a complex, or mutations in the ‘basic patch’ of histone H4 (an epitope that regulates ISWI activity), strongly supporting RSC-ISW1a antagonism in vivo. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array
Platform:
GPL4130
4 Samples
Download data: TXT
Series
Accession:
GSE65589
ID:
200065589
17.

Basis of Specificity for a Conserved Promiscuous Chromatin Remodeling Protein [Mnase-seq]

(Submitter supplied) We propose an interacting barrier mechanism for cooperation between Isw2-related proteins and sequence-specific DNA binding factors.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL19756
49 Samples
Download data: SGR
Series
Accession:
GSE150200
ID:
200150200
18.

Basis of Specificity for a Conserved Promiscuous Chromatin Remodeling Protein

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL19756
72 Samples
Download data: SGR, TXT
Series
Accession:
GSE149804
ID:
200149804
19.

Basis of Specificity for a Conserved Promiscuous Chromatin Remodeling Protein [RNA-Seq]

(Submitter supplied) We propose an interacting barrier mechanism for cooperation between Isw2-related proteins and sequence-specific DNA binding factors.
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by high throughput sequencing
Platform:
GPL19756
12 Samples
Download data: TXT
Series
Accession:
GSE149803
ID:
200149803
20.

Basis of Specificity for a Conserved Promiscuous Chromatin Remodeling Protein [ChIP-Seq]

(Submitter supplied) We propose an interacting barrier mechanism for cooperation between Isw2-related proteins and sequence-specific DNA binding factors.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL19756
11 Samples
Download data: TXT
Series
Accession:
GSE149801
ID:
200149801
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