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Status |
Public on Aug 20, 2018 |
Title |
RNA-seq analysis to assess transcriptional effects of Rp mutations in wing imaginal discs and their dependence on Xrp1 |
Organism |
Drosophila melanogaster |
Experiment type |
Expression profiling by high throughput sequencing
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Summary |
Since the putative transcription factor Xrp1 gene is required for many aspects of Rp+/- phenotypes, we sought to define what transcriptional changes occur in Rp+/- wing discs and their dependence on Xrp1. We identified 257 genes whose transcripts were significantly altered in the same direction in two Rp+/- genotypes, most of which depended on Xrp1. The results show that Xrp1 regulates a significant transcriptional response in Rp+/- genotypes.
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Overall design |
12 samples with wildtype (named as frt82_w) in triplicate, one type of Rp+/- (named as M67_w) in triplicate, and the other type of Rp+/- (named as M95_w) in triplicate, as well as RpS3+/- Xrp1+/- (named as M2-73_M95) in triplicate
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Contributor(s) |
Kiparaki M, Blanco J, Folgado V, Ji Z, Kumar A, Rimesso G, Baker N |
Citation(s) |
30078730, 31909714, 35179490 |
NIH grant(s) |
Grant ID |
Grant title |
Affiliation |
Name |
R01 GM120451 |
Ribosomes and Growth Regulation |
ALBERT EINSTEIN COLLEGE OF MEDICINE |
Nicholas E Baker |
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Submission date |
Apr 09, 2018 |
Last update date |
Mar 30, 2022 |
Contact name |
Nicholas Baker |
E-mail(s) |
[email protected]
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Phone |
7184302854
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Organization name |
albert einstein college of medicine
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Department |
genetics
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Street address |
1300 Morris Park Avenue
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City |
bronx |
State/province |
NY |
ZIP/Postal code |
10461 |
Country |
USA |
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Platforms (1) |
GPL13304 |
Illumina HiSeq 2000 (Drosophila melanogaster) |
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Samples (12)
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Relations |
BioProject |
PRJNA449346 |
SRA |
SRP139048 |