Related Experiment Video
Updated: Jan 20, 2026

Glycomics-Guided Glycoproteomics Facilitates Comprehensive Profiling of the Glycoproteome in Complex Tumor Microenvironments
Published on: February 7, 2025
N-Glycoproteomic Profiling Reveals Alteration In Extracellular Matrix Organization In Non-Type Bladder Carcinoma
Barnali Deb1,2, Krishna Patel1,3, Gajanan Sathe4,5
1Institute of Bioinformatics, International Technology Park, Bangalore 560066, India.
Abstract:
Treatment of advanced and metastatic bladder carcinoma is often ineffective and displays variable clinical outcomes. Studying this aggressive molecular subtype of bladder carcinoma will lead to better understanding of the pathogenesis which may lead to the identification of new therapeutic strategies. The non-type bladder subtype is phenotypically mesenchymal and has mesenchymal features with a high metastatic ability. Post-translational addition of oligosaccharide residues is an important modification that influences cellular functions and contributes to disease pathology. Here, we report the comparative analysis of N-linked glycosylation across bladder cancer subtypes. To analyze the glycosite-containing peptides, we carried out LC-MS/MS-based quantitative proteomic and glycoproteomic profiling. We identified 1299 unique N-linked glycopeptides corresponding to 460 proteins. Additionally, we identified 118 unique N-linked glycopeptides corresponding to 84 proteins to be differentially glycosylated only in non-type subtypes as compared to luminal/basal subtypes. Most of the altered glycoproteins were also observed with changes in their global protein expression levels. However, alterations in 55 differentially expressed glycoproteins showed no significant change at the protein abundance level, representing that the glycosylation site occupancy was changed between the non-type subtype and luminal/basal subtypes. Importantly, the extracellular matrix organization pathway was dysregulated in the non-type subtype of bladder carcinoma. N-glycosylation modifications in the extracellular matrix organization proteins may be a contributing factor for the mesenchymal aggressive phenotype in non-type subtype. These aberrant protein glycosylation would provide additional avenues to employ glycan-based therapies and may lead to the identification of novel therapeutic targets.
Insights
Investigating N-linked glycosylation in bladder cancer subtypes reveals distinct alterations in the aggressive non-type subtype. These changes in protein glycosylation, particularly in extracellular matrix proteins, may drive the mesenchymal phenotype and offer new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Glycobiology
Background:
- Advanced and metastatic bladder carcinoma treatments are often ineffective.
- The non-type bladder cancer subtype exhibits a mesenchymal phenotype and high metastatic potential.
- Protein glycosylation is a critical post-translational modification influencing cellular functions and disease pathology.
Purpose of the Study:
- To comparatively analyze N-linked glycosylation across different bladder cancer subtypes.
- To identify specific glycosylation alterations in the aggressive non-type bladder cancer subtype.
- To explore the role of altered glycosylation in bladder cancer pathogenesis and identify potential therapeutic targets.
Main Methods:
- Utilized LC-MS/MS-based quantitative proteomic and glycoproteomic profiling.
- Analyzed glycosite-containing peptides to compare N-linked glycosylation patterns.
- Identified differentially glycosylated proteins between non-type and luminal/basal bladder cancer subtypes.
Main Results:
- Identified 1299 unique N-linked glycopeptides from 460 proteins.
- Discovered 118 unique N-linked glycopeptides (84 proteins) differentially glycosylated in the non-type subtype.
- Found dysregulation of the extracellular matrix organization pathway in the non-type subtype, with altered glycosylation of related proteins.
Conclusions:
- Aberrant N-glycosylation in extracellular matrix proteins may contribute to the aggressive mesenchymal phenotype of the non-type bladder cancer subtype.
- Altered glycosylation site occupancy, independent of global protein levels, is a key feature of the non-type subtype.
- These findings suggest glycan-based therapies and novel therapeutic targets for bladder carcinoma.
More Related Videos
Related Concept Videos
The Extracellular Matrix
The Extracellular Matrix
In order to maintain tissue organization, many animal cells are surrounded by structural molecules that make up the extracellular matrix (ECM). Together, the molecules in the ECM maintain the structural integrity of tissue as well as the remarkable specific properties of certain tissues.
Composition of the Extracellular Matrix
The extracellular matrix (ECM) is commonly composed of ground substance, a gel-like fluid, fibrous components, and many structurally and functionally diverse...
Extracellular Matrix
Types of Genetic Transfer Between Organisms
Types of Genetic Transfer Between Organisms
Alterations in Respiration II
In Biot's breathing, the respiratory rate and depth are irregular, alternating between periods of deep gasping and apnea. Common causes...

