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Correlation Analysis of Expression Profile and Quantitative iTRAQ-LC-MS/MS Proteomics Reveals Resistance Mechanism Against TuMV in Chinese Cabbage (Brassica rapa ssp. pekinensis)
We present a study of hepatocellular carcinoma developed on non-fibrotic liver (nfHCC) that combines complementary quantitative iTRAQ-based proteomics and phosphoproteomics approaches. Using both approaches, we analyzed a set of 24 samples (18 nfHCC vs 6 non-tumor liver tissue).
ORGANISM(S): Homo sapiens (Human) 
2014-09-18 | PXD001253 | Pride
To better examine the molecular mechanisms behind the virus infection, we conducted a correlation analysis of RNA-Seq and quantitative iTRAQ-LC-MS/MS in TuMV-infected and in healthy Chinese cabbage leaves.
ORGANISM(S): Brassica rapa subsp. pekinensis 
2020-08-07 | GSE151932 | GEO
Cultivated eggplant XN, a waterlogging-tolerant variety, were treated with waterlogging stress, and the root of XN eggplant were harvested at the time point of 0, 6, 12, and 24 h post treatment ,relatively. iTRAQ-based quantitative proteomics was performed to analyze protein dynamics in eggplant roo...
ORGANISM(S): Solanum melongena 
2023-07-20 | PXD041747 | Pride
Using a combination of BONCAT technique and iTRAQ 4-plex quantitative proteomics MS, we profiled the de novo protein synthesis in the starving L. mexicana parasites in a temporally resolved manner. This approach uniquely integrates the high specificity of the BONCAT technique for the NSPs with the h...
ORGANISM(S): Trypanosoma brucei 
2019-12-03 | PXD014580 | Pride
Using a combination of BONCAT technique and iTRAQ 3-plex quantitative proteomics MS, we profiled the de novo protein synthesis in the starving L. mexicana parasites in a temporally resolved manner. This approach uniquely integrates the high specificity of the BONCAT technique for the NSPs with the h...
ORGANISM(S): Trypanosoma brucei 
2019-12-04 | PXD015827 | Pride
Cypermethrin (CYP) is one of the most widely used pesticides in large scale for agricultural and domestic purpose and the residue often seriously affects aquatic system. Environmental pollutants induced protein changes in organisms could be detected by proteomics, leading to discovery of potential ...
ORGANISM(S): Chlorella vulgaris (Green alga) 
2016-03-14 | PXD003521 | Pride
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