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There is an increasing drive to replace fish oil (FO) in finfish aquaculture diets with vegetable oils (VO), driven by the short supply of FO derived from wild fish stocks. Little is known of the consequences for fish health after such substitution. The effect of dietary VO on hepatic gene expressio...
ORGANISM(S): Salmo salar 
The experiment focused on the transcriptomic changes associated with gill inflammation in sea farmed Atlantic salmon (Salmo salar). To ensure the multifactorial aspect of gill inflammation, fish were sampled at three marine production sites (A on Isle of Mull, B in Shetland and C in Shetland) betwee...
ORGANISM(S): Salmo salar 
We previously demonstrated plasticity in urokinase receptor (u-PAR) display in clonal colon cancer cells (Cancer Research 66: 7957-7967 (2006)). Thus, u-PAR display oscillates 10 fold between high and low density at the cell surface. We have determined that this oscillation in u-PAR display is postt...
ORGANISM(S): Homo sapiens 
Data from ProteomeXchange, PXD ID: PXD002486. Experiment: 11q13_group3_HHn1, file: folder summary. Published as part of J Proteome Res. 2015 Jul 29 . From the Abstract: {{i}} ... We employed a tandem mass spectrometry proteomics approach using tumor cell lines to identify the cell surface proteins ...
ORGANISM(S): Homo_sapiens_viruses, Human 
Proteomic strategy to define therapeutically relevant targets in cell lines that contain the 11q13 amplicon compared to those that do not and to ascertain which genes are amplified at the protein level and, concomitantly, are key drivers for tumor growth and/or maintenance. Furthermore, so called p...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2016-07-22 | MSV000080001 | MassIVE
A ruler array combines novel sample preparation protocols, tiling genomic microarrays, and a new computational method to turn each probe on a microarray into a ruler that measures the physical distance between defined genomic sequences regardless of the intervening sequence. The ruler array protocol...
ORGANISM(S): Saccharomyces cerevisiae 
We present a detailed single cell time course of the macrophage response to Salmonella infection. By combining phenotypic fluorescent labels with single cell expression analysis we are able to identify gene modules associated with bacterial exposure and bacterial infection. We also identify other ...
ORGANISM(S): Mus musculus 
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