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Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag

There is a pressing need to develop ways to deliver therapeutic macromolecules to their intracellular targets. Certain viral and bacterial proteins are readily internalized in functional form through lipid raft‐mediated/caveolar endocytosis, but mimicking this process with protein cargoes at therape...

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Autores principales: Imre, Norbert, Hetényi, Anasztázia, Szabó, Enikő, Bodnár, Brigitta, Szkalisity, Abel, Gróf, Ilona, Bocsik, Alexandra, Deli, Mária A., Horvath, Peter, Czibula, Ágnes, Monostori, Éva, Martinek, Tamás A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7029632/
https://www.ncbi.nlm.nih.gov/pubmed/32099761
http://dx.doi.org/10.1002/advs.201902621
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author Imre, Norbert
Hetényi, Anasztázia
Szabó, Enikő
Bodnár, Brigitta
Szkalisity, Abel
Gróf, Ilona
Bocsik, Alexandra
Deli, Mária A.
Horvath, Peter
Czibula, Ágnes
Monostori, Éva
Martinek, Tamás A.
author_facet Imre, Norbert
Hetényi, Anasztázia
Szabó, Enikő
Bodnár, Brigitta
Szkalisity, Abel
Gróf, Ilona
Bocsik, Alexandra
Deli, Mária A.
Horvath, Peter
Czibula, Ágnes
Monostori, Éva
Martinek, Tamás A.
author_sort Imre, Norbert
collection PubMed
description There is a pressing need to develop ways to deliver therapeutic macromolecules to their intracellular targets. Certain viral and bacterial proteins are readily internalized in functional form through lipid raft‐mediated/caveolar endocytosis, but mimicking this process with protein cargoes at therapeutically relevant concentrations is a great challenge. Targeting ganglioside GM1 in the caveolar pits triggers endocytosis. A pentapeptide sequence WYKYW is presented, which specifically captures the glycan moiety of GM1 (K (D) = 24 nm). The WYKYW‐tag facilitates the GM1‐dependent endocytosis of proteins in which the cargo‐loaded caveosomes do not fuse with lysosomes. A structurally intact immunoglobulin G complex (580 kDa) is successfully delivered into live HeLa cells at extracellular concentrations ranging from 20 to 160 nm, and escape of the cargo proteins to the cytosol is observed. The short peptidic WYKYW‐tag is an advantageous endocytosis routing sequence for lipid raft‐mediated/caveolar cell delivery of therapeutic macromolecules, especially for cancer cells that overexpress GM1.
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spelling pubmed-70296322020-02-25 Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag Imre, Norbert Hetényi, Anasztázia Szabó, Enikő Bodnár, Brigitta Szkalisity, Abel Gróf, Ilona Bocsik, Alexandra Deli, Mária A. Horvath, Peter Czibula, Ágnes Monostori, Éva Martinek, Tamás A. Adv Sci (Weinh) Full Papers There is a pressing need to develop ways to deliver therapeutic macromolecules to their intracellular targets. Certain viral and bacterial proteins are readily internalized in functional form through lipid raft‐mediated/caveolar endocytosis, but mimicking this process with protein cargoes at therapeutically relevant concentrations is a great challenge. Targeting ganglioside GM1 in the caveolar pits triggers endocytosis. A pentapeptide sequence WYKYW is presented, which specifically captures the glycan moiety of GM1 (K (D) = 24 nm). The WYKYW‐tag facilitates the GM1‐dependent endocytosis of proteins in which the cargo‐loaded caveosomes do not fuse with lysosomes. A structurally intact immunoglobulin G complex (580 kDa) is successfully delivered into live HeLa cells at extracellular concentrations ranging from 20 to 160 nm, and escape of the cargo proteins to the cytosol is observed. The short peptidic WYKYW‐tag is an advantageous endocytosis routing sequence for lipid raft‐mediated/caveolar cell delivery of therapeutic macromolecules, especially for cancer cells that overexpress GM1. John Wiley and Sons Inc. 2020-01-09 /pmc/articles/PMC7029632/ /pubmed/32099761 http://dx.doi.org/10.1002/advs.201902621 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Imre, Norbert
Hetényi, Anasztázia
Szabó, Enikő
Bodnár, Brigitta
Szkalisity, Abel
Gróf, Ilona
Bocsik, Alexandra
Deli, Mária A.
Horvath, Peter
Czibula, Ágnes
Monostori, Éva
Martinek, Tamás A.
Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag
title Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag
title_full Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag
title_fullStr Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag
title_full_unstemmed Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag
title_short Routing Nanomolar Protein Cargoes to Lipid Raft‐Mediated/Caveolar Endocytosis through a Ganglioside GM1‐Specific Recognition Tag
title_sort routing nanomolar protein cargoes to lipid raft‐mediated/caveolar endocytosis through a ganglioside gm1‐specific recognition tag
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7029632/
https://www.ncbi.nlm.nih.gov/pubmed/32099761
http://dx.doi.org/10.1002/advs.201902621
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