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Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells

Immunotoxins as antiviral therapeutics are largely unexplored but have promising prospective due to their high selectivity potential and their unparalleled efficiency. One recent example targeted the virus-encoded G protein-coupled receptor US28 as a strategy for specific and efficient treatment of...

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Autores principales: Spiess, Katja, Jeppesen, Mads G., Malmgaard-Clausen, Mikkel, Krzywkowski, Karen, Kledal, Thomas N., Rosenkilde, Mette M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5303859/
https://www.ncbi.nlm.nih.gov/pubmed/28251165
http://dx.doi.org/10.1155/2017/4069260
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author Spiess, Katja
Jeppesen, Mads G.
Malmgaard-Clausen, Mikkel
Krzywkowski, Karen
Kledal, Thomas N.
Rosenkilde, Mette M.
author_facet Spiess, Katja
Jeppesen, Mads G.
Malmgaard-Clausen, Mikkel
Krzywkowski, Karen
Kledal, Thomas N.
Rosenkilde, Mette M.
author_sort Spiess, Katja
collection PubMed
description Immunotoxins as antiviral therapeutics are largely unexplored but have promising prospective due to their high selectivity potential and their unparalleled efficiency. One recent example targeted the virus-encoded G protein-coupled receptor US28 as a strategy for specific and efficient treatment of human cytomegalovirus (HCMV) infections. US28 is expressed on virus-infected cells and scavenge chemokines by rapid internalization. The chemokine-based fusion-toxin protein (FTP) consisted of a variant (F49A) of CX(3)CL1 specifically targeting US28 linked to the catalytic domain of Pseudomonas exotoxin A (PE). Here, we systematically seek to improve F49A-FTP by modifications in its three structural domains; we generated variants with (1) altered chemokine sequence (K14A, F49L, and F49E), (2) shortened and elongated linker region, and (3) modified toxin domain. Only F49L-FTP displayed higher selectivity in its binding to US28 versus CX(3)CR1, the endogenous receptor for CX(3)CL1, but this was not matched by a more selective killing of US28-expressing cells. A longer linker and different toxin variants decreased US28 affinity and selective killing. Thereby, F49A-FTP represents the best candidate for HCMV treatment. Many viruses encode internalizing receptors suggesting that not only HCMV but also, for instance, Epstein-Barr virus and Kaposi's sarcoma-associated herpesvirus may be targeted by FTPs.
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spelling pubmed-53038592017-03-01 Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells Spiess, Katja Jeppesen, Mads G. Malmgaard-Clausen, Mikkel Krzywkowski, Karen Kledal, Thomas N. Rosenkilde, Mette M. J Immunol Res Research Article Immunotoxins as antiviral therapeutics are largely unexplored but have promising prospective due to their high selectivity potential and their unparalleled efficiency. One recent example targeted the virus-encoded G protein-coupled receptor US28 as a strategy for specific and efficient treatment of human cytomegalovirus (HCMV) infections. US28 is expressed on virus-infected cells and scavenge chemokines by rapid internalization. The chemokine-based fusion-toxin protein (FTP) consisted of a variant (F49A) of CX(3)CL1 specifically targeting US28 linked to the catalytic domain of Pseudomonas exotoxin A (PE). Here, we systematically seek to improve F49A-FTP by modifications in its three structural domains; we generated variants with (1) altered chemokine sequence (K14A, F49L, and F49E), (2) shortened and elongated linker region, and (3) modified toxin domain. Only F49L-FTP displayed higher selectivity in its binding to US28 versus CX(3)CR1, the endogenous receptor for CX(3)CL1, but this was not matched by a more selective killing of US28-expressing cells. A longer linker and different toxin variants decreased US28 affinity and selective killing. Thereby, F49A-FTP represents the best candidate for HCMV treatment. Many viruses encode internalizing receptors suggesting that not only HCMV but also, for instance, Epstein-Barr virus and Kaposi's sarcoma-associated herpesvirus may be targeted by FTPs. Hindawi Publishing Corporation 2017 2017-01-30 /pmc/articles/PMC5303859/ /pubmed/28251165 http://dx.doi.org/10.1155/2017/4069260 Text en Copyright © 2017 Katja Spiess et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Spiess, Katja
Jeppesen, Mads G.
Malmgaard-Clausen, Mikkel
Krzywkowski, Karen
Kledal, Thomas N.
Rosenkilde, Mette M.
Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells
title Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells
title_full Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells
title_fullStr Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells
title_full_unstemmed Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells
title_short Novel Chemokine-Based Immunotoxins for Potent and Selective Targeting of Cytomegalovirus Infected Cells
title_sort novel chemokine-based immunotoxins for potent and selective targeting of cytomegalovirus infected cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5303859/
https://www.ncbi.nlm.nih.gov/pubmed/28251165
http://dx.doi.org/10.1155/2017/4069260
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