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Modular Pore-Forming Immunotoxins with Caged Cytotoxicity Tailored by Directed Evolution
[Image: see text] Immunotoxins are proteins containing a cell-targeting element linked to a toxin that are under investigation for next-generation cancer treatment. However, these agents are difficult to synthesize, chemically heterogeneous, expensive, and show toxicity toward healthy cells. In this...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2018
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6243392/ https://www.ncbi.nlm.nih.gov/pubmed/30278129 http://dx.doi.org/10.1021/acschembio.8b00720 |
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author | Mutter, Natalie L. Soskine, Misha Huang, Gang Albuquerque, Inês S. Bernardes, Gonçalo J. L. Maglia, Giovanni |
author_facet | Mutter, Natalie L. Soskine, Misha Huang, Gang Albuquerque, Inês S. Bernardes, Gonçalo J. L. Maglia, Giovanni |
author_sort | Mutter, Natalie L. |
collection | PubMed |
description | [Image: see text] Immunotoxins are proteins containing a cell-targeting element linked to a toxin that are under investigation for next-generation cancer treatment. However, these agents are difficult to synthesize, chemically heterogeneous, expensive, and show toxicity toward healthy cells. In this work, we describe the synthesis and characterization of a new type of immunotoxin that showed exquisite selectivity toward targeted cells. In our construct, targeting molecules were covalently attached or genetically fused to oligomeric pore-forming toxins. The activity of the immunotoxin was then caged by fusing a soluble protein to the transmembrane domain and activated via cleavage with furin, which is a protease that is overexpressed in many cancer cells. During the several coupling steps, directed evolution allowed the efficient synthesis of the molecules in E. coli cells, as well as selection for further specificity toward targeted cells. The final construct showed no off-target activity, while acquiring an additional degree of specificity toward the targeted cells upon activation. The pore-forming toxins described here do not require internalization to operate, while the many protomeric subunits can be individually modified to refine target specificity. |
format | Online Article Text |
id | pubmed-6243392 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-62433922018-11-21 Modular Pore-Forming Immunotoxins with Caged Cytotoxicity Tailored by Directed Evolution Mutter, Natalie L. Soskine, Misha Huang, Gang Albuquerque, Inês S. Bernardes, Gonçalo J. L. Maglia, Giovanni ACS Chem Biol [Image: see text] Immunotoxins are proteins containing a cell-targeting element linked to a toxin that are under investigation for next-generation cancer treatment. However, these agents are difficult to synthesize, chemically heterogeneous, expensive, and show toxicity toward healthy cells. In this work, we describe the synthesis and characterization of a new type of immunotoxin that showed exquisite selectivity toward targeted cells. In our construct, targeting molecules were covalently attached or genetically fused to oligomeric pore-forming toxins. The activity of the immunotoxin was then caged by fusing a soluble protein to the transmembrane domain and activated via cleavage with furin, which is a protease that is overexpressed in many cancer cells. During the several coupling steps, directed evolution allowed the efficient synthesis of the molecules in E. coli cells, as well as selection for further specificity toward targeted cells. The final construct showed no off-target activity, while acquiring an additional degree of specificity toward the targeted cells upon activation. The pore-forming toxins described here do not require internalization to operate, while the many protomeric subunits can be individually modified to refine target specificity. American Chemical Society 2018-10-02 2018-11-16 /pmc/articles/PMC6243392/ /pubmed/30278129 http://dx.doi.org/10.1021/acschembio.8b00720 Text en Copyright © 2018 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes. |
spellingShingle | Mutter, Natalie L. Soskine, Misha Huang, Gang Albuquerque, Inês S. Bernardes, Gonçalo J. L. Maglia, Giovanni Modular Pore-Forming Immunotoxins with Caged Cytotoxicity Tailored by Directed Evolution |
title | Modular Pore-Forming Immunotoxins with Caged Cytotoxicity
Tailored by Directed Evolution |
title_full | Modular Pore-Forming Immunotoxins with Caged Cytotoxicity
Tailored by Directed Evolution |
title_fullStr | Modular Pore-Forming Immunotoxins with Caged Cytotoxicity
Tailored by Directed Evolution |
title_full_unstemmed | Modular Pore-Forming Immunotoxins with Caged Cytotoxicity
Tailored by Directed Evolution |
title_short | Modular Pore-Forming Immunotoxins with Caged Cytotoxicity
Tailored by Directed Evolution |
title_sort | modular pore-forming immunotoxins with caged cytotoxicity
tailored by directed evolution |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6243392/ https://www.ncbi.nlm.nih.gov/pubmed/30278129 http://dx.doi.org/10.1021/acschembio.8b00720 |
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