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In this study, we used tandem mass tag (TMT)-based quantitative approach to acquire proteomic profiles of porcine GV and MII oocytes and MII oocytes vitrified at the GV stage.
ORGANISM(S): Sus scrofa domesticus (domestic pig) 
2021-07-01 | PXD023107 | Pride
It is a challenging work to screen, identify, and quantify acylcarnitines in complex biological samples. A method, based on the retention time (RT) prediction and data-independent acquisition strategies, was proposed for the large-scale identification of acylcarnitines using liquid chromatography co...
2021-10-06 | MTBLS1932 | MetaboLights
The heterogeneity and low abundance of protein glycosylation present challenging barriers to the analysis of intact glycopeptides, which is key to comprehensively understanding the role of glycosylation in an organism. Efficient and specific enrichment of intact glycopeptides could help greatly with...
ORGANISM(S): Human 
2021-04-28 | MSV000087324 | MassIVE
The summary file contains summary information for all the raw files processed with a single MaxQuant run. The summary information consists of some MaxQuant parameters, information of the raw file contents, and statistics on the peak detection. Based on this file a quick overview can be gathered on t...
ORGANISM(S): Capra Hircus 
CHPP chr 1,8,20 proteome dataset using the HCC cell lines of MHCC97H and HCCLM3, part 1
ORGANISM(S): Homo Sapiens (human) 
2014-12-31 | PAe005189 | PeptideAtlas
CHPP chr 1,8,20 proteome dataset using the HCC cell lines of MHCC97H and HCCLM3, part 2
ORGANISM(S): Homo Sapiens (human) 
2014-12-31 | PAe005197 | PeptideAtlas
CHPP chr 1,8,20 proteome dataset using the HCC cell lines of MHCC97H and HCCLM3, part 3
ORGANISM(S): Homo Sapiens (human) 
2014-12-31 | PAe005194 | PeptideAtlas
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