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Mapping the genetic architecture of RNA transcript abundances has potential for revealing molecular mechanisms underlying complex traits like disease. Gene expression microarrays allow monitoring genetic control on a whole transcriptome level, but validity and reproducibility of microarray data is a...
ORGANISM(S): Mus musculus 
Summary Mapping the genetic architecture of RNA transcript abundances has potential for revealing molecular mechanisms underlying complex traits like disease. Gene expression microarrays allow monitoring genetic control on a whole transcriptome level, but validity and reproducibility of microarray d...
ORGANISM(S): Mus musculus 
This series represents 52 tissues hybridized across 5 different chip patterns. Probes were placed at every exon-exon junction in each transcript. Keywords = junction alternate splicing oligonucleotide Keywords: parallel sample. This dataset is part of the TransQST collection.
ORGANISM(S): Homo sapiens 
Samples were purchased from Clontech as mRNA. Hybridization material was generated through a random-priming amplification procedure (RP-AMP) using primers with a random sequence at the 3' end and a fixed motif at the 5' end. shDNP256 (first strand synthesis): 5'- TAG ATG CTG TTG NNN NNN NNN -3' sh...
ORGANISM(S): Homo sapiens 
DNA microarray technology is used to determine gene expression profiles of various cell types, especially abnormal cells, such as cancer. By contrast, relatively little attention has been given to expression profiling of normal tissues. Here we describe studies of gene expression in peripheral blood...
ORGANISM(S): Homo sapiens 
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