ArticleAnalytical chemistry2021
Enhancing Comprehensive Analysis of Secreted Glycoproteins from Cultured Cells without Serum Starvation.
Article in Analytical chemistry, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Systematic Quantification of Protein O-GlcNAcylation Reveals Common and Cell-Type-Specific Responses to N-Glycosylation Inhibition in Human Cells.Analytical chemistry · 2026Article
- Modulation of cellular transcriptome and proteome composition by azidohomoalanine-implications on click chemistry-based secretome analysis.Journal of molecular medicine (Berlin, Germany) · 2023Article
- Deciphering the Properties and Functions of Glycoproteins Using Quantitative Proteomics.Journal of proteome research · 2023Review
- Combining Selective Enrichment and a Boosting Approach to Globally and Site-Specifically Characterize Protein Co-translationalAnalytical chemistry · 2023Article
- Systematic characterization of extracellular glycoproteins using mass spectrometry.Mass spectrometry reviews · 2023Review
- A streamlined tandem tip-based workflow for sensitive nanoscale phosphoproteomics.Communications biology · 2023Article
- Quantitative Structural Proteomics Unveils the Conformational Changes of Proteins under the Endoplasmic Reticulum Stress.Analytical chemistry · 2022Article
- Boost-DiLeu: Enhanced IsobaricAnalytical chemistry · 2022Article
- Spatial and temporal proteomics reveals the distinct distributions and dynamics of O-GlcNAcylated proteins.Cell reports · 2022Article
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Authors and funding
4 authors.
Funding
Abstract
Glycoproteins secreted by cells play essential roles in the regulation of extracellular activities. Secreted glycoproteins are often reflective of cellular status, and thus glycoproteins from easily accessible bodily fluids can serve as excellent biomarkers for disease detection. Cultured cells have been extensively employed as models in the research fields of biology and biomedicine, and global analysis of glycoproteins secreted from these cells provides insights into cellular activities and glycoprotein functions. However, comprehensive identification and quantification of secreted glycoproteins is a daunting task because of their low abundances compared with the high-abundance serum proteins required for cell growth and proliferation. Several studies employed serum-free media to analyze secreted proteins, but it has been shown that serum starvation, even for a short period of time, can alter protein secretion. To overcome these issues, we developed a method to globally characterize secreted glycoproteins and their N-glycosylation sites from cultured cells by combining selective enrichment of secreted glycoproteins with a boosting approach. The results demonstrated the importance of the boosting sample selection and the boosting-to-sample ratio for improving the coverage of secreted glycoproteins. The method was applied to globally quantify secreted glycoproteins from THP-1 monocytes and macrophages in response to lipopolysaccharides (LPS) and from Hep G2 cells treated with TGF-β without serum starvation. We found differentially secreted glycoproteins in these model systems that showed the cellular response to the immune activation or the epithelial-to-mesenchymal transition. Benefiting from the selective enrichment and the signal enhancement of low-abundance secreted glycoproteins, this method can be extensively applied to study secreted glycoproteins without serum starvation, which will provide a better understanding of protein secretion and cellular activity.
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