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Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery

[Image: see text] Cyclic heptapeptide cyclo(FΦRRRRQ) (cFΦR(4), where Φ is l-2-naphthylalanine) was recently found to be efficiently internalized by mammalian cells. In this study, its mechanism of internalization was investigated by perturbing various endocytic events through the introduction of pha...

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Autores principales: Qian, Ziqing, LaRochelle, Jonathan R., Jiang, Bisheng, Lian, Wenlong, Hard, Ryan L., Selner, Nicholas G., Luechapanichkul, Rinrada, Barrios, Amy M., Pei, Dehua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4075989/
https://www.ncbi.nlm.nih.gov/pubmed/24896852
http://dx.doi.org/10.1021/bi5004102
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author Qian, Ziqing
LaRochelle, Jonathan R.
Jiang, Bisheng
Lian, Wenlong
Hard, Ryan L.
Selner, Nicholas G.
Luechapanichkul, Rinrada
Barrios, Amy M.
Pei, Dehua
author_facet Qian, Ziqing
LaRochelle, Jonathan R.
Jiang, Bisheng
Lian, Wenlong
Hard, Ryan L.
Selner, Nicholas G.
Luechapanichkul, Rinrada
Barrios, Amy M.
Pei, Dehua
author_sort Qian, Ziqing
collection PubMed
description [Image: see text] Cyclic heptapeptide cyclo(FΦRRRRQ) (cFΦR(4), where Φ is l-2-naphthylalanine) was recently found to be efficiently internalized by mammalian cells. In this study, its mechanism of internalization was investigated by perturbing various endocytic events through the introduction of pharmacologic agents and genetic mutations. The results show that cFΦR(4) binds directly to membrane phospholipids, is internalized into human cancer cells through endocytosis, and escapes from early endosomes into the cytoplasm. Its cargo capacity was examined with a wide variety of molecules, including small-molecule dyes, linear and cyclic peptides of various charged states, and proteins. Depending on the nature of the cargos, they may be delivered by endocyclic (insertion of cargo into the cFΦR(4) ring), exocyclic (attachment of cargo to the Gln side chain), or bicyclic approaches (fusion of cFΦR(4) and cyclic cargo rings). The overall delivery efficiency (i.e., delivery of cargo into the cytoplasm and nucleus) of cFΦR(4) was 4–12-fold higher than those of nonaarginine, HIV Tat-derived peptide, or penetratin. The higher delivery efficiency, coupled with superior serum stability, minimal toxicity, and synthetic accessibility, renders cFΦR(4) a useful transporter for intracellular cargo delivery and a suitable system for investigating the mechanism of endosomal escape.
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spelling pubmed-40759892015-06-04 Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery Qian, Ziqing LaRochelle, Jonathan R. Jiang, Bisheng Lian, Wenlong Hard, Ryan L. Selner, Nicholas G. Luechapanichkul, Rinrada Barrios, Amy M. Pei, Dehua Biochemistry [Image: see text] Cyclic heptapeptide cyclo(FΦRRRRQ) (cFΦR(4), where Φ is l-2-naphthylalanine) was recently found to be efficiently internalized by mammalian cells. In this study, its mechanism of internalization was investigated by perturbing various endocytic events through the introduction of pharmacologic agents and genetic mutations. The results show that cFΦR(4) binds directly to membrane phospholipids, is internalized into human cancer cells through endocytosis, and escapes from early endosomes into the cytoplasm. Its cargo capacity was examined with a wide variety of molecules, including small-molecule dyes, linear and cyclic peptides of various charged states, and proteins. Depending on the nature of the cargos, they may be delivered by endocyclic (insertion of cargo into the cFΦR(4) ring), exocyclic (attachment of cargo to the Gln side chain), or bicyclic approaches (fusion of cFΦR(4) and cyclic cargo rings). The overall delivery efficiency (i.e., delivery of cargo into the cytoplasm and nucleus) of cFΦR(4) was 4–12-fold higher than those of nonaarginine, HIV Tat-derived peptide, or penetratin. The higher delivery efficiency, coupled with superior serum stability, minimal toxicity, and synthetic accessibility, renders cFΦR(4) a useful transporter for intracellular cargo delivery and a suitable system for investigating the mechanism of endosomal escape. American Chemical Society 2014-06-04 2014-06-24 /pmc/articles/PMC4075989/ /pubmed/24896852 http://dx.doi.org/10.1021/bi5004102 Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Qian, Ziqing
LaRochelle, Jonathan R.
Jiang, Bisheng
Lian, Wenlong
Hard, Ryan L.
Selner, Nicholas G.
Luechapanichkul, Rinrada
Barrios, Amy M.
Pei, Dehua
Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery
title Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery
title_full Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery
title_fullStr Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery
title_full_unstemmed Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery
title_short Early Endosomal Escape of a Cyclic Cell-Penetrating Peptide Allows Effective Cytosolic Cargo Delivery
title_sort early endosomal escape of a cyclic cell-penetrating peptide allows effective cytosolic cargo delivery
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4075989/
https://www.ncbi.nlm.nih.gov/pubmed/24896852
http://dx.doi.org/10.1021/bi5004102
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