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Links from GEO DataSets

Items: 20

1.

RSC primes the quiescent genome for hypertranscription upon cell cycle re-entry

(Submitter supplied) We report gene expression patterns and chromatin architecture changes as yeast re-enter the cell cycle from quiescence
Organism:
Saccharomyces cerevisiae
Type:
Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL17342
49 Samples
Download data: BW
Series
Accession:
GSE166789
ID:
200166789
2.

The RSC complex remodels nucleosomes in transcribed coding sequences and promotes transcription in Saccharomyces cerevisiae

(Submitter supplied) RSC (Remodels the Structure of Chromatin) is a conserved ATP-dependent chromatin remodeling complex that regulates many biological processes, including transcription by RNA polymerase II (Pol II). We report that not only RSC binds to nucleosomes in coding sequences (CDSs) but also remodels them to promote transcription. RSC MNase ChIP-seq data revealed that RSC-protected fragments were very heterogenous (~80 bp to 180 bp) compared to the sharper profile displayed by the MNase inputs (140 bp to 160 bp), supporting the idea that RSC activity promotes accessibility of nucleosomal DNA. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL21656
8 Samples
Download data: BW
Series
Accession:
GSE147065
ID:
200147065
3.

Contrasting roles of the RSC and ISW1/CHD1 chromatin remodelers in RNA polymerase II elongation and termination

(Submitter supplied) Most yeast genes have a nucleosome-depleted region (NDR) at the promoter and an array of regularly spaced nucleosomes phased relative to the transcription start site. We have examined the interplay between RSC (a conserved essential SWI/SNF-type complex that determines NDR size) and the ISW1, CHD1 and ISW2 nucleosome spacing enzymes in chromatin organization and transcription, using isogenic strains lacking all combinations of these enzymes. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL13821
6 Samples
Download data: TDF
Series
Accession:
GSE117514
ID:
200117514
4.

Contrasting roles of the RSC and ISW1/CHD1 chromatin remodelers in RNA polymerase II elongation and termination

(Submitter supplied) We addressed the roles of four remodeling machines (ISW1, ISW2, CHD1 and RSC) in specifying the chromatin organization.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platforms:
GPL13821 GPL19756
32 Samples
Download data: BEDGRAPH
Series
Accession:
GSE73428
ID:
200073428
5.

RSC Regulates Nucleosome Positioning at Pol II Genes and Density at Pol III Genes

(Submitter supplied) Nucleosomes restrict the access of transcription factors to chromatin. RSC is a SWI/SNF-family chromatin-remodeling complex from yeast that repositions and ejects nucleosomes in vitro. Here, we examined these activities and their importance in vivo. We utilized array-based methods to examine nucleosome occupancy and positioning at more than 200 locations in the genome following the controlled destruction of the catalytic subunit of RSC, Sth1. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array
Platform:
GPL5637
50 Samples
Download data: TXT
Series
Accession:
GSE8862
ID:
200008862
6.

RSC Defines MNase-sensitive Promoter Architecture in Yeast

(Submitter supplied) The classic view of nucleosome organization at active promoters is that two well-positioned nucleosomes flank a nucleosome-depleted region (NDR). However, this view has been recently challenged by contradictory reports as to whether a distinct set of wider (≳150 bp) NDRs instead contain unusually unstable Micrococcal Nuclease-sensitive “fragile” particles, thought to be nucleosomal because of their size. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL17342
63 Samples
Download data: BEDGRAPH, PDF
Series
Accession:
GSE116853
ID:
200116853
7.

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
8.

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
9.

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
10.

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
11.

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
12.

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
13.

Condensin-dependent chromatin condensation represses transcription globally during quiescence

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing; Other
Platform:
GPL17342
48 Samples
Download data: SGR, TXT
Series
Accession:
GSE120606
ID:
200120606
14.

Condensin-dependent chromatin condensation represses transcription globally during quiescence [Micro-C XL]

(Submitter supplied) Quiescence is a stress-resistant state in which cells reversibly exit the mitotic cell cycle and suspend most cellular processes. Quiescence is essential for stem cell maintenance and its misregulation is implicated in tumor formation. One of the conserved hallmarks of quiescent cells, from Saccharomyces cerevisiae to humans, is highly condensed chromatin. Here, we use Micro-C XL to map chromatin contacts at single-nucleosome resolution genome-wide to elucidate mechanisms and functions of condensed chromatin in quiescent S. more...
Organism:
Saccharomyces cerevisiae
Type:
Other
Platform:
GPL17342
4 Samples
Download data: BED, TXT
Series
Accession:
GSE120605
ID:
200120605
15.

Condensin-dependent chromatin condensation represses transcription globally during quiescence [ChIP-Seq]

(Submitter supplied) Quiescence is a stress-resistant state in which cells reversibly exit the mitotic cell cycle and suspend most cellular processes. Quiescence is essential for stem cell maintenance and its misregulation is implicated in tumor formation. One of the conserved hallmarks of quiescent cells, from Saccharomyces cerevisiae to humans, is highly condensed chromatin. Here, we use Micro-C XL to map chromatin contacts at single-nucleosome resolution genome-wide to elucidate mechanisms and functions of condensed chromatin in quiescent S. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL17342
44 Samples
Download data: SGR
Series
Accession:
GSE114566
ID:
200114566
16.

Promoter DNA sequence guides factors that position the +1 nucleosome and facilitate TBP binding

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae S288C; Saccharomyces cerevisiae W303; Saccharomyces cerevisiae
Type:
Expression profiling by array; Genome binding/occupancy profiling by high throughput sequencing
Platforms:
GPL17342 GPL11232
64 Samples
Download data: BW, TXT
Series
Accession:
GSE98260
ID:
200098260
17.

Promoter DNA sequence guides factors that position the +1 nucleosome and facilitate TBP binding [sequencing]

(Submitter supplied) Here we present evidence that precise positioning of the +1 promoter nucleosome in yeast is critical for efficient TBP binding and pre-initiation complex assembly, and is determined, at least in part, by the action of two key factors, the essential chromatin remodeler RSC and one (or more) of a small set of ubiquitous pioneer transcription factors (PTFs). Despite their widespread co-localization, we show that RSC and PTFs often act independently to generate accessible chromatin. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL17342
52 Samples
Download data: BW
Series
Accession:
GSE98259
ID:
200098259
18.

Promoter DNA sequence guides factors that position the +1 nucleosome and facilitate TBP binding [array]

(Submitter supplied) Here we present evidence that precise positioning of the +1 promoter nucleosome in yeast is critical for efficient TBP binding and pre-initiation complex assembly, and is determined, at least in part, by the action of two key factors, the essential chromatin remodeler RSC and one (or more) of a small set of ubiquitous pioneer transcription factors (PTFs). Despite their widespread co-localization, we show that RSC and PTFs often act independently to generate accessible chromatin. more...
Organism:
Saccharomyces cerevisiae W303; Saccharomyces cerevisiae; Saccharomyces cerevisiae S288C
Type:
Expression profiling by array
Platform:
GPL11232
12 Samples
Download data: TXT
Series
Accession:
GSE98205
ID:
200098205
19.

The RSC Complex localizes to coding sequences to regulate Pol II and histone occupancy

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array
Platforms:
GPL10930 GPL7250
62 Samples
Download data: BAR, CEL, TXT
Series
Accession:
GSE62522
ID:
200062522
20.

The RSC Complex localizes to coding sequences to regulate Pol II and histone occupancy (Agilent)

(Submitter supplied) ATP-dependent chromatin remodelers regulate chromatin structure during multiple stages of transcription. We report that RSC, an essential chromatin remodeler, is recruited to the open reading frames (ORFs) of actively transcribed genes genome-wide, suggesting a role for RSC in regulating transcription elongation. Consistent with such a role, Pol II occupancy in the ORFs of weakly transcribed genes is drastically reduced upon depletion of the RSC catalytic subunit Sth1. more...
Organism:
Saccharomyces cerevisiae
Type:
Genome binding/occupancy profiling by genome tiling array
Platform:
GPL10930
58 Samples
Download data: TXT
Series
Accession:
GSE62519
ID:
200062519
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