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We developed an automated glycopeptide enrichment method for the analysis of serum site-specific N-glycoproteome. This automated method allowed for processing one sample within 20 min. It showed higher enrichment specificity, more intact glycopeptide identifications, and better quantitative reproduc...
ORGANISM(S): Homo Sapiens (human) 
Identification results of peptide-spectrum matches supporting Glyco-Decipher manuscript (Glyco-Decipher: Glycan database-independent peptide matching enables discovery of new glycans and in-depth characterization of site-specific N-glycosylation). Recently, several elegant bioinformatics tools have ...
ORGANISM(S): Homo Sapiens 
As an important part of regenerative medicine, human umbilical cord mesenchymal stem cells show a good clinical therapeutic effect, but their use is still limited. In recent years, the use of umbilical cord mesenchymal stem cell exosomes as cell replacement therapy can effectively overcome some defe...
ORGANISM(S): Mus Musculus 
2022-11-01 | PXD037877 |
Abdominal Aortic Aneurysm (AAA) is a fatal vascular disease characterized by abnormal expansion of the arterial wall and a high risk of rupture. Current treatments for AAA primarily rely on surgical intervention, while effective pharmacological therapies have yet to be developed. The major bottlenec...
ORGANISM(S): Mus Musculus 
2025-02-17 | PXD060895 |
We present the first comprehensive proteomic and phosphoproteomic atlas of nine major organs of the Chinese hamster (Cricetulus griseus). A total of 14,219 proteins, 11,828 phosphorylated proteins, and 47,122 phosphorylation sites were identified, revealing distinct inter-organ molecular features.
ORGANISM(S): Cricetulus Griseus 
The Project aims to provide resources for QC of multiple types of omic technologies and effective integration of diverse datasets from various scenarios. Large quantities of multi-omics materials, datasets, and best practice for their QC utilities were developed for whole process QC of large scale, ...
ORGANISM(S): Homo Sapiens 
Quantitative mass spectrometry (MS)-based proteomics to assess acetylation modification of MYC in HCCLM3 cells with SCARB2 overexpression and analysis of SCARB2 immunoprecipitates in HCCLM3 cells.
ORGANISM(S): Homo Sapiens 
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