Artículo
Pl1 peptide engages acidic surfaces on tumor-associated fibronectin and tenascin isoforms to trigger cellular uptake
Lingasamy, Prakash; Põnograjeva, Kristina; Kopanchuk, Sergei; Tobi, Allan; Rinken, Ago; General, Ignacio
; Asciutto, Eliana Karina
; Teesalu, Tambet
Fecha de publicación:
12/2021
Editorial:
MDPI
Revista:
Pharmaceutics
ISSN:
1999-4923
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Tumor extracellular matrix (ECM) is a high-capacity target for the precision delivery of affinity ligand-guided drugs and imaging agents. Recently, we developed a PL1 peptide (sequence: PPRRGLIKLKTS) for systemic targeting of malignant ECM. Here, we map the dynamics of PL1 binding to its receptors Fibronectin Extra Domain B (FN-EDB) and Tenascin C C-isoform (TNC-C) by computational modeling and cell-free binding studies on mutated receptor proteins, and study cellular binding and internalization of PL1 nanoparticles in cultured cells. Molecular dynamics simulation and docking analysis suggested that the engagement of PL1 peptide with both receptors is primarily driven by electrostatic interactions. Substituting acidic amino acid residues with neutral amino acids at predicted PL1 binding sites in FN-EDB (D52N-D49N-D12N) and TNC-C (D39N-D45N) resulted in the loss of binding of PL1 nanoparticles. Remarkably, PL1-functionalized nanoparticles (NPs) were not only deposited on the target ECM but bound the cells and initiated a robust cellular uptake via a pathway resembling macropinocytosis. Our studies establish the mode of engagement of the PL1 peptide with its receptors and suggest applications for intracellular delivery of nanoscale payloads. The outcomes of this work can be used for the development of PL1-derived peptides with improved stability, affinity, and specificity for precision targeting of the tumor ECM and malignant cells.
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Articulos (ICIFI)
Articulos de INSTITUTO DE CIENCIAS FISICAS
Articulos de INSTITUTO DE CIENCIAS FISICAS
Citación
Lingasamy, Prakash; Põnograjeva, Kristina; Kopanchuk, Sergei; Tobi, Allan; Rinken, Ago; et al.; Pl1 peptide engages acidic surfaces on tumor-associated fibronectin and tenascin isoforms to trigger cellular uptake; MDPI; Pharmaceutics; 13; 12; 12-2021; 1-14
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