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.

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.

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