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Items: 1 to 20 of 92

1.

[SHAPE-MaP_10_mM] U1 snRNP regulates recruitment of early spliceosomal components by disrupting SRSF1-pre-mRNA interactions

(Submitter supplied) Please refer to the summary of the Superseries.
Organism:
Human adenovirus 2
Type:
Expression profiling by high throughput sequencing
Platform:
GPL30034
5 Samples
Download data: SHAPE
Series
Accession:
GSE202785
ID:
200202785
2.

[RNP-MaP] U1 snRNP regulates recruitment of early spliceosomal components by disrupting SRSF1-pre-mRNA interactions

(Submitter supplied) Please refer to the summary of the Superseries.
Organism:
Human adenovirus 2
Type:
Other
Platform:
GPL30034
6 Samples
Download data: TXT
Series
Accession:
GSE188650
ID:
200188650
3.

[SHAPE-MaP_4_mM] U1 snRNP regulates recruitment of early spliceosomal components by disrupting SRSF1-pre-mRNA interactions

(Submitter supplied) Please refer to the summary of the Superseries.
Organism:
Human adenovirus 2
Type:
Other
Platform:
GPL30034
11 Samples
Download data: SHAPE
Series
Accession:
GSE188649
ID:
200188649
4.

Cooperative engagement and subsequent selective displacement of SR proteins define the pre-mRNA 3D structural scaffold for early spliceosome assembly

(Submitter supplied) We recently reported that serine-arginine-rich (SR) protein-mediated pre-mRNA structural remodeling generates a pre-mRNA 3D structural scaffold that is stably recognized by the early spliceosomal components. However, the intermediate steps between the free pre-mRNA and the assembled early spliceosome are not yet characterized. By probing the early spliceosomal complexes in vitro and RNA-protein interactions in vivo, we show that the SR proteins bind the pre-mRNAs cooperatively generating a substrate that recruits U1 snRNP and U2AF65 in a splice signal-independent manner. more...
Organism:
Human adenovirus 2
Type:
Other
Platform:
GPL30034
22 Samples
Download data: SHAPE, TXT
Series
Accession:
GSE188652
ID:
200188652
5.

Discovery of pre-mRNA structural scaffold as a contributor to mammalian splicing code

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Human adenovirus 2
Type:
Other
Platform:
GPL30034
59 Samples
Download data
Series
Accession:
GSE173178
ID:
200173178
6.

Discovery of pre-mRNA structural scaffold as a contributor to mammalian splicing code [In Vivo]

(Submitter supplied) The specific recognition of splice signals at or near the exon-intron junctions is not explained by their weak conservation across the mammalian transcriptome and postulated to require a multitude of features embedded in the pre-mRNA strand. We explored the possibility of three-dimensional structural scaffold of a pre-mRNA guiding early spliceosomal components to the splice signal sequences. We find that mutation in non-cognate splice signal sequences of a model pre-mRNA substrate could impede recruitment of early spliceosomal components due to disruption of global structure of the pre-mRNA. more...
Organism:
Human adenovirus 2
Type:
Other
Platform:
GPL30034
9 Samples
Download data: SHAPE
Series
Accession:
GSE173177
ID:
200173177
7.

Discovery of a pre-mRNA structural scaffold as a contributor to the mammalian splicing code [in vitro]

(Submitter supplied) The specific recognition of splice signals at or near exon-intron junctions is not explained by their weak conservation and instead is postulated to require a multitude of features embedded in the pre-mRNA strand. We explored the possibility of three-dimensional structural scaffold of AdML – a model pre-mRNA substrate – guiding early spliceosomal components to the splice signal sequences. We find that mutations in the non-cognate splice signal sequences impede recruitment of early spliceosomal components due to disruption of the global structure of the pre-mRNA. more...
Organism:
Human adenovirus 2
Type:
Other
Platform:
GPL30034
50 Samples
Download data: SHAPE
Series
Accession:
GSE173175
ID:
200173175
8.

Clearance of a persistent picornavirus infection is associated with enhanced pro-apoptotic and cellular immune responses

(Submitter supplied) Immunomodulatory mechanisms associated with clearance versus persistence of foot-and-mouth disease virus (FMDV) in micro-dissected compartments of the bovine nasopharynx were investigated using qRT-PCR and whole transcriptome microarray. Analysis of tissue samples obtained by laser capture microdissection (LCM) during transitional and persistent phases of infection demonstrated significant differences in transcriptome profiles of animals that cleared infection versus those that became persistently infected carriers. more...
Organism:
Bos taurus; Foot-and-mouth disease virus; Human adenovirus 5
Type:
Expression profiling by array
Platform:
GPL22061
32 Samples
Download data: GPR
Series
Accession:
GSE104058
ID:
200104058
9.

Transcriptomic Analysis of Persistent Infection with Foot-and-Mouth Disease Virus in Cattle Suggests Impairment of Apoptosis and Cell-Mediated Immunity in the Nasopharynx

(Submitter supplied) In order to investigate the mechanisms of persistent foot-and-mouth disease virus (FMDV) infection in cattle, transcriptome alterations associated with the FMDV carrier state were characterized using a bovine whole-transcriptome microarray. Eighteen cattle (8 vaccinated with a recombinant FMDV A vaccine, 10 non-vaccinated) were challenged with FMDV A24 Cruzeiro, and the gene expression profiles of nasopharyngeal tissues collected between 21 and 35 days after challenge were compared between 11 persistently infected carriers and 7 non-carriers. more...
Organism:
Foot-and-mouth disease virus; Human adenovirus 5; Bos taurus
Type:
Expression profiling by array
Platform:
GPL22061
40 Samples
Download data
Series
Accession:
GSE83514
ID:
200083514
10.

Illumina MiSeq (Human adenovirus 2)

Organism:
Human adenovirus 2
7 Series
81 Samples
Download data
Platform
Accession:
GPL30034
ID:
100030034
11.

Agilent-072413 FADRU Bovine 4x45K v3 array (Feature number version)

(Submitter supplied) SurePrint HD, see manufacturer's web site
Organism:
Bos taurus; Foot-and-mouth disease virus; Human adenovirus 5
2 Series
72 Samples
Download data
Platform
Accession:
GPL22061
ID:
100022061
12.

Ad-DC

Organism:
Human adenovirus 2
Source name:
In vitro transcribed RNA
Platform:
GPL30034
Series:
GSE188652 GSE202785
Download data
Sample
Accession:
GSM6133168
ID:
306133168
13.

Ad-10XSRSF1-U1_Ad

Organism:
Human adenovirus 2
Source name:
In vitro transcribed RNA
Platform:
GPL30034
Series:
GSE188652 GSE202785
Download data: SHAPE
Sample
Accession:
GSM6133167
ID:
306133167
14.

Ad-10XSRSF1-65-35-U1_Ad

Organism:
Human adenovirus 2
Source name:
In vitro transcribed RNA
Platform:
GPL30034
Series:
GSE188652 GSE202785
Download data: SHAPE
Sample
Accession:
GSM6133166
ID:
306133166
15.

Ad-5XSRSF1-U1_Ad

Organism:
Human adenovirus 2
Source name:
In vitro transcribed RNA
Platform:
GPL30034
Series:
GSE188652 GSE202785
Download data: SHAPE
Sample
Accession:
GSM6133165
ID:
306133165
16.

Ad-5XSRSF1-65-35-U1

Organism:
Human adenovirus 2
Source name:
In vitro transcribed RNA
Platform:
GPL30034
Series:
GSE188652 GSE202785
Download data: SHAPE
Sample
Accession:
GSM6133164
ID:
306133164
17.

AdML_5X SRSF1_NMIA

Organism:
Human adenovirus 2
Source name:
In vitro transcription
Platform:
GPL30034
Series:
GSE188649 GSE188652
Download data
Sample
Accession:
GSM5690393
ID:
305690393
18.

AdML_5X SRSF1_DMSO

Organism:
Human adenovirus 2
Source name:
In vitro transcription
Platform:
GPL30034
Series:
GSE188649 GSE188652
Download data
Sample
Accession:
GSM5690392
ID:
305690392
19.

RNP_AdML + SRSF1 + SDA

Organism:
Human adenovirus 2
Source name:
In vitro transcribed from a plasmid
Platform:
GPL30034
Series:
GSE188650 GSE188652
Download data: TXT
Sample
Accession:
GSM5687631
ID:
305687631
20.

RNP_AdML + SRSF1 + DMSO

Organism:
Human adenovirus 2
Source name:
In vitro transcribed from a plasmid
Platform:
GPL30034
Series:
GSE188650 GSE188652
Download data
Sample
Accession:
GSM5687630
ID:
305687630
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