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Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization

[Image: see text] Many of the reported arginine-rich cell-penetrating peptides (CPPs) for the enhanced delivery of drugs are linear peptides composed of more than seven arginine residues to retain the cell penetration properties. Herein, we synthesized a class of nine polyarginine peptides containin...

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Autores principales: Oh, Donghoon, Nasrolahi Shirazi, Amir, Northup, Kevin, Sullivan, Brian, Tiwari, Rakesh Kumar, Bisoffi, Marco, Parang, Keykavous
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144761/
https://www.ncbi.nlm.nih.gov/pubmed/24978295
http://dx.doi.org/10.1021/mp500203e
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author Oh, Donghoon
Nasrolahi Shirazi, Amir
Northup, Kevin
Sullivan, Brian
Tiwari, Rakesh Kumar
Bisoffi, Marco
Parang, Keykavous
author_facet Oh, Donghoon
Nasrolahi Shirazi, Amir
Northup, Kevin
Sullivan, Brian
Tiwari, Rakesh Kumar
Bisoffi, Marco
Parang, Keykavous
author_sort Oh, Donghoon
collection PubMed
description [Image: see text] Many of the reported arginine-rich cell-penetrating peptides (CPPs) for the enhanced delivery of drugs are linear peptides composed of more than seven arginine residues to retain the cell penetration properties. Herein, we synthesized a class of nine polyarginine peptides containing 5 and 6 arginines, namely, R(5) and R(6). We further explored the effect of acylation with long chain fatty acids (i.e., octanoic acid, dodecanoic acid, and hexadecanoic acid) and cyclization on the cell penetrating properties of the peptides. The fluorescence-labeled acylated cyclic peptide dodecanoyl-[R(5)] and linear peptide dodecanoyl-(R(5)) showed approximately 13.7- and 10.2-fold higher cellular uptake than that of control 5,6-carboxyfluorescein, respectively. The mechanism of the peptide internalization into cells was found to be energy-dependent endocytosis. Dodecanoyl-[R(5)] and dodecanoyl-[R(6)] enhanced the intracellular uptake of a fluorescence-labeled cell-impermeable negatively charged phosphopeptide (F′-GpYEEI) in human ovarian cancer cells (SK-OV-3) by 3.4-fold and 5.5-fold, respectively, as shown by flow cytometry. The cellular uptake of F′-GpYEEI in the presence of hexadecanoyl-[R(5)] was 9.3- and 6.0-fold higher than that in the presence of octanoyl-[R(5)] and dodecanoyl-[R(5)], respectively. Dodecanoyl-[R(5)] enhanced the cellular uptake of the phosphopeptide by 1.4–2.5-fold higher than the corresponding linear peptide dodecanoyl-(R(5)) and those of representative CPPs, such as hepta-arginine (CR(7)) and TAT peptide. These results showed that a combination of acylation by long chain fatty acids and cyclization on short arginine-containing peptides can improve their cell-penetrating property, possibly through efficient interaction of rigid positively charged R and hydrophobic dodecanoyl moiety with the corresponding residues in the cell membrane phospholipids.
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spelling pubmed-41447612015-06-30 Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization Oh, Donghoon Nasrolahi Shirazi, Amir Northup, Kevin Sullivan, Brian Tiwari, Rakesh Kumar Bisoffi, Marco Parang, Keykavous Mol Pharm [Image: see text] Many of the reported arginine-rich cell-penetrating peptides (CPPs) for the enhanced delivery of drugs are linear peptides composed of more than seven arginine residues to retain the cell penetration properties. Herein, we synthesized a class of nine polyarginine peptides containing 5 and 6 arginines, namely, R(5) and R(6). We further explored the effect of acylation with long chain fatty acids (i.e., octanoic acid, dodecanoic acid, and hexadecanoic acid) and cyclization on the cell penetrating properties of the peptides. The fluorescence-labeled acylated cyclic peptide dodecanoyl-[R(5)] and linear peptide dodecanoyl-(R(5)) showed approximately 13.7- and 10.2-fold higher cellular uptake than that of control 5,6-carboxyfluorescein, respectively. The mechanism of the peptide internalization into cells was found to be energy-dependent endocytosis. Dodecanoyl-[R(5)] and dodecanoyl-[R(6)] enhanced the intracellular uptake of a fluorescence-labeled cell-impermeable negatively charged phosphopeptide (F′-GpYEEI) in human ovarian cancer cells (SK-OV-3) by 3.4-fold and 5.5-fold, respectively, as shown by flow cytometry. The cellular uptake of F′-GpYEEI in the presence of hexadecanoyl-[R(5)] was 9.3- and 6.0-fold higher than that in the presence of octanoyl-[R(5)] and dodecanoyl-[R(5)], respectively. Dodecanoyl-[R(5)] enhanced the cellular uptake of the phosphopeptide by 1.4–2.5-fold higher than the corresponding linear peptide dodecanoyl-(R(5)) and those of representative CPPs, such as hepta-arginine (CR(7)) and TAT peptide. These results showed that a combination of acylation by long chain fatty acids and cyclization on short arginine-containing peptides can improve their cell-penetrating property, possibly through efficient interaction of rigid positively charged R and hydrophobic dodecanoyl moiety with the corresponding residues in the cell membrane phospholipids. American Chemical Society 2014-06-30 2014-08-04 /pmc/articles/PMC4144761/ /pubmed/24978295 http://dx.doi.org/10.1021/mp500203e Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Oh, Donghoon
Nasrolahi Shirazi, Amir
Northup, Kevin
Sullivan, Brian
Tiwari, Rakesh Kumar
Bisoffi, Marco
Parang, Keykavous
Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization
title Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization
title_full Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization
title_fullStr Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization
title_full_unstemmed Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization
title_short Enhanced Cellular Uptake of Short Polyarginine Peptides through Fatty Acylation and Cyclization
title_sort enhanced cellular uptake of short polyarginine peptides through fatty acylation and cyclization
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144761/
https://www.ncbi.nlm.nih.gov/pubmed/24978295
http://dx.doi.org/10.1021/mp500203e
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