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Enrichment of Extracellular Matrix Proteins from Tissues and Digestion into Peptides for Mass Spectrometry Analysis
Published on: July 23, 2015
Proteomic Profiling of Extracellular Matrix Components from Patient Metastases Identifies Consistently Elevated
Noor Jailkhani1, Karl R Clauser2, Howard H Mak1
1Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, Massachusetts.
Abstract:
Metastases are hard to detect and treat, and they cause most cancer-related deaths. The relative lack of therapies targeting metastases represents a major unmet clinical need. The extracellular matrix (ECM) forms a major component of the tumor microenvironment in both primary and metastatic tumors, and certain ECM proteins can be selectively and abundantly expressed in tumors. Nanobodies against ECM proteins that show selective abundance in metastases have the potential to be used as vehicles for delivery of imaging and therapeutic cargoes. Here, we describe a strategy to develop phage-display libraries of nanobodies against ECM proteins expressed in human metastases, using entire ECM-enriched preparations from triple-negative breast cancer (TNBC) and colorectal cancer metastases to different organs as immunogens. In parallel, LC-MS/MS-based proteomics were used to define a metastasis-associated ECM signature shared by metastases from TNBC and colorectal cancer, and this conserved set of ECM proteins was selectively elevated in other tumors. As proof of concept, selective and high-affinity nanobodies were isolated against an example protein from this signature, tenascin-C (TNC), known to be abundant in many tumor types and to play a role in metastasis. TNC was abundantly expressed in patient metastases and widely expressed across diverse metastatic sites originating from several primary tumor types. Immuno-PET/CT showed that anti-TNC nanobodies bind TNBC tumors and metastases with excellent specificity. We propose that such generic nanobodies against tumors and metastases are promising cancer-agnostic tools for delivery of therapeutics to tumor and metastatic ECM.
Significance:
Nanobodies specific for extracellular matrix markers commonly expressed in primary tumors and metastases are promising agents for noninvasive detection of tumors and metastases and potential tools for targeted therapy.
Insights
Researchers developed nanobodies targeting extracellular matrix proteins in metastases. These nanobodies show promise for detecting and treating cancer metastases, offering new cancer-agnostic therapeutic strategies.
Area of Science:
- Oncology
- Biotechnology
- Proteomics
Background:
- Metastases are a primary cause of cancer mortality, with limited targeted therapies available.
- The extracellular matrix (ECM) is a key component of the tumor microenvironment, with specific ECM proteins overexpressed in metastatic sites.
- Developing targeted therapies for metastases remains a significant unmet clinical need.
Purpose of the Study:
- To develop nanobodies against extracellular matrix (ECM) proteins selectively expressed in human metastases.
- To identify a conserved metastasis-associated ECM signature for potential cancer-agnostic targeting.
- To validate the utility of these nanobodies for imaging and therapeutic delivery.
Main Methods:
- Phage-display libraries were generated using ECM-enriched preparations from triple-negative breast cancer (TNBC) and colorectal cancer metastases.
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) proteomics identified a shared metastasis-associated ECM signature.
- High-affinity nanobodies were isolated against tenascin-C (TNC), a validated ECM target, and their binding specificity was assessed using immuno-PET/CT.
Main Results:
- A metastasis-associated ECM signature was identified, with conserved proteins elevated across various tumor types.
- Selective and high-affinity nanobodies were successfully generated against tenascin-C (TNC).
- Anti-TNC nanobodies demonstrated specific binding to TNBC tumors and metastases in immuno-PET/CT imaging.
Conclusions:
- Nanobodies targeting tumor and metastatic ECM proteins represent promising cancer-agnostic tools.
- These nanobodies can serve as effective vehicles for delivering imaging and therapeutic agents to metastatic sites.
- The strategy provides a foundation for developing novel diagnostic and therapeutic approaches for metastatic cancers.

