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Updated: Feb 1, 2026

A Spin-Tip Enrichment Strategy for Simultaneous Analysis of N-Glycopeptides and Phosphopeptides from Human Pancreatic Tissues
Published on: May 4, 2022
Automated phosphopeptide enrichment from minute quantities of frozen malignant melanoma tissue
Jimmy Rodriguez Murillo1, Magdalena Kuras1, Melinda Rezeli1
1Clinical Protein Science & Imaging, Department of Clinical Sciences (Lund), Department of Biomedical Engineering, Lund University, Lund, Sweden.
Abstract:
To acquire a deeper understanding of malignant melanoma (MM), it is essential to study the proteome of patient tissues. In particular, phosphoproteomics of MM has become of significant importance because of the central role that phosphorylation plays in the development of MM. Investigating clinical samples, however, is an extremely challenging task as there is usually only very limited quantities of material available to perform targeted enrichment approaches. Here, an automated phosphopeptide enrichment protocol using the AssayMap Bravo platform was applied to MM tissues and assessed for performance. The strategy proved to be highly-sensitive, less prone to variability, less laborious than existing techniques and adequate for starting quantities at the microgram level. An Fe(III)-NTA-IMAC-based enrichment workflow was applied to a dilution series of MM tissue lysates. The workflow was efficient in terms of sensitivity, reproducibility and phosphosite localization; and from only 12.5 μg of sample, more than 1,000 phosphopeptides were identified. In addition, from 60 μg of protein material the number of identified phosphoproteins from individual MM samples was comparable to previous reports that used extensive fractionation methods. Our data set included key pathways that are involved in MM progression; such as MAPK, melanocyte development and integrin signaling. Moreover, tissue-specific immunological proteins were identified, that have not been previously observed in the proteome of MM-derived cell lines. In conclusion, this workflow is suitable to study large cohorts of clinical samples that demand automatic and careful handling.
Insights
Studying malignant melanoma (MM) proteomes is crucial. An automated phosphopeptide enrichment protocol enables sensitive, reproducible analysis of limited MM tissue samples, identifying key signaling pathways.
Area of Science:
- Proteomics
- Cancer Biology
- Biochemistry
Background:
- Malignant melanoma (MM) research requires understanding its proteome, particularly phosphorylation's role in development.
- Analyzing limited clinical samples for phosphoproteomics is challenging.
- Existing methods for phosphopeptide enrichment are often laborious and require larger sample quantities.
Purpose of the Study:
- To develop and assess an automated phosphopeptide enrichment protocol for malignant melanoma (MM) tissues.
- To evaluate the protocol's performance with limited sample quantities.
- To identify key signaling pathways and proteins involved in MM progression.
Main Methods:
- Application of an automated phosphopeptide enrichment protocol using the AssayMap Bravo platform.
- Utilizing an Fe(III)-NTA-IMAC-based enrichment workflow on a dilution series of MM tissue lysates.
- Assessing sensitivity, reproducibility, and phosphosite localization.
Main Results:
- The automated workflow is highly sensitive, reproducible, and less laborious than existing techniques.
- Identified over 1,000 phosphopeptides from as little as 12.5 μg of sample.
- Identified key MM progression pathways (MAPK, melanocyte development, integrin signaling) and novel tissue-specific immunological proteins.
Conclusions:
- The developed workflow is suitable for analyzing limited malignant melanoma (MM) clinical samples.
- It enables sensitive and reproducible phosphoproteomic analysis, crucial for understanding MM.
- The protocol is ideal for large-scale studies requiring automated and careful handling of clinical specimens.
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