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Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides

We recently developed activatable cell-penetrating peptides (ACPPs) that target contrast agents to in vivo sites of matrix metalloproteinase activity, such as tumors. Here we use parallel in vivo and in vitro selection with phage display to identify novel tumor-homing ACPPs with no bias for primary...

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Autores principales: Whitney, Mike, Crisp, Jessica L., Olson, Emilia S., Aguilera, Todd A., Gross, Larry A., Ellies, Lesley G., Tsien, Roger Y.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2903386/
https://www.ncbi.nlm.nih.gov/pubmed/20460372
http://dx.doi.org/10.1074/jbc.M110.138297
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author Whitney, Mike
Crisp, Jessica L.
Olson, Emilia S.
Aguilera, Todd A.
Gross, Larry A.
Ellies, Lesley G.
Tsien, Roger Y.
author_facet Whitney, Mike
Crisp, Jessica L.
Olson, Emilia S.
Aguilera, Todd A.
Gross, Larry A.
Ellies, Lesley G.
Tsien, Roger Y.
author_sort Whitney, Mike
collection PubMed
description We recently developed activatable cell-penetrating peptides (ACPPs) that target contrast agents to in vivo sites of matrix metalloproteinase activity, such as tumors. Here we use parallel in vivo and in vitro selection with phage display to identify novel tumor-homing ACPPs with no bias for primary sequence or target protease. Specifically, phage displaying a library of ACPPs were either injected into tumor-bearing mice, followed by isolation of cleaved phage from dissected tumor, or isolated based on selective cleavage by extracts of tumor versus normal tissue. Selected sequences were synthesized as fluorescently labeled peptides, and tumor-specific cleavage was confirmed by digestion with tissue extracts. The most efficiently cleaved peptide contained the substrate sequence RLQLKL and labeled tumors and metastases from several cancer models with up to 5-fold contrast. This uniquely identified ACPP was not cleaved by matrix metalloproteinases or various coagulation factors but was efficiently cleaved by plasmin and elastases, both of which have been shown to be aberrantly overexpressed in tumors. The identification of an ACPP that targets tumor expressed proteases without rational design highlights the value of unbiased selection schemes for the development of potential therapeutic agents.
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spelling pubmed-29033862010-07-21 Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides Whitney, Mike Crisp, Jessica L. Olson, Emilia S. Aguilera, Todd A. Gross, Larry A. Ellies, Lesley G. Tsien, Roger Y. J Biol Chem Enzymology We recently developed activatable cell-penetrating peptides (ACPPs) that target contrast agents to in vivo sites of matrix metalloproteinase activity, such as tumors. Here we use parallel in vivo and in vitro selection with phage display to identify novel tumor-homing ACPPs with no bias for primary sequence or target protease. Specifically, phage displaying a library of ACPPs were either injected into tumor-bearing mice, followed by isolation of cleaved phage from dissected tumor, or isolated based on selective cleavage by extracts of tumor versus normal tissue. Selected sequences were synthesized as fluorescently labeled peptides, and tumor-specific cleavage was confirmed by digestion with tissue extracts. The most efficiently cleaved peptide contained the substrate sequence RLQLKL and labeled tumors and metastases from several cancer models with up to 5-fold contrast. This uniquely identified ACPP was not cleaved by matrix metalloproteinases or various coagulation factors but was efficiently cleaved by plasmin and elastases, both of which have been shown to be aberrantly overexpressed in tumors. The identification of an ACPP that targets tumor expressed proteases without rational design highlights the value of unbiased selection schemes for the development of potential therapeutic agents. American Society for Biochemistry and Molecular Biology 2010-07-16 2010-05-11 /pmc/articles/PMC2903386/ /pubmed/20460372 http://dx.doi.org/10.1074/jbc.M110.138297 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Enzymology
Whitney, Mike
Crisp, Jessica L.
Olson, Emilia S.
Aguilera, Todd A.
Gross, Larry A.
Ellies, Lesley G.
Tsien, Roger Y.
Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides
title Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides
title_full Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides
title_fullStr Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides
title_full_unstemmed Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides
title_short Parallel in Vivo and in Vitro Selection Using Phage Display Identifies Protease-dependent Tumor-targeting Peptides
title_sort parallel in vivo and in vitro selection using phage display identifies protease-dependent tumor-targeting peptides
topic Enzymology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2903386/
https://www.ncbi.nlm.nih.gov/pubmed/20460372
http://dx.doi.org/10.1074/jbc.M110.138297
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