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A CYCLIC PEPTIDE TARGETS GLIOBLASTOMA BY BINDING TO ABERRANTLY EXPOSED SNAP25
Alberto G Arias1, Laura Tovar-Martinez2, Eliana Asciutto3
1Medical Physics Department, Gerencia de Área Aplicaciones Nucleares a la Salud (GAANS), Centro Atómico Bariloche. San Carlos de Bariloche, Argentina.
Abstract:
Disease-specific changes in tumors and other diseased tissues are an important target of research because they provide clues on the pathophysiology of the disease as well as uncovering potentially useful markers for diagnosis and treatment. Here, we report a new cyclic peptide, CESPLLSEC (CES), that specifically accumulated (homed) in intracranial U87MG and the WT-GBM model of glioblastoma from intravenous (IV) injection, associating with the vasculature. Affinity chromatography of U87MG tumor extracts on insolubilized CES peptide identified Synaptosomal Associated Protein 25 (SNAP25) as a candidate target molecule (receptor) for CES. Several results supported the identification of SNAP25 as the CES receptor. IV-injected FAM-CES colocalized with SNAP25 in the tumors, and direct binding studies showed specific CES peptide binding to recombinant human SNAP25. A CES peptide-drug conjugate designed for photodynamic therapy showed selective cytotoxicity to SNAP25+ glioblastoma cell lines. Specific accumulation of systemically injected anti-SNAP25 antibody in U87MG glioblastoma, and labeling of intact U87MG cells with anti-SNAP in flow cytometry showed that SNAP25 is available from the circulation but not in normal tissues and that it is present at the cell surface. Using an array of ECM proteins and surface plasmon resonance revealed that SNAP25 binds moderately to collagen V and strongly to collagen VI. Modeling studies suggested that CES and collagen VI compete for the same binding site on SNAP25. Our results introduce CES as a valuable targeting peptide for drug delivery, and its receptor SNAP25 as a possible molecular marker of interest for glioblastoma.
Insights
A novel cyclic peptide, CES, specifically targets glioblastoma by binding to Synaptosomal Associated Protein 25 (SNAP25). This peptide shows potential for glioblastoma drug delivery and SNAP25 may serve as a diagnostic marker.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Tumor-specific changes are crucial for understanding disease pathophysiology and identifying diagnostic/therapeutic markers.
- Glioblastoma (GBM) research seeks novel targets for improved patient outcomes.
Purpose of the Study:
- To identify a peptide that specifically targets glioblastoma.
- To characterize the molecular interactions of the targeting peptide and its receptor.
- To evaluate the therapeutic potential of the peptide-receptor interaction.
Main Methods:
- Intravenous injection of cyclic peptide CESPLLSEC (CES) in glioblastoma models.
- Affinity chromatography to identify CES binding partners.
- Fluorescent labeling and colocalization studies.
- Direct binding assays with recombinant proteins.
- In vitro cytotoxicity assays of peptide-drug conjugates.
- Flow cytometry and surface plasmon resonance.
Main Results:
- CES specifically accumulated in intracranial glioblastoma, associating with vasculature.
- Synaptosomal Associated Protein 25 (SNAP25) was identified as the CES receptor.
- FAM-CES colocalized with SNAP25 in tumors; CES bound directly to recombinant SNAP25.
- SNAP25 is accessible on glioblastoma cells from circulation but not in normal tissues.
- CES and collagen VI compete for the same binding site on SNAP25.
Conclusions:
- CES is a promising peptide for targeted glioblastoma drug delivery.
- SNAP25 is a potential molecular marker for glioblastoma diagnosis and therapy.
- The interaction between CES and SNAP25, potentially involving collagen VI, offers new therapeutic avenues.
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