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Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry

[Image: see text] Antibody-drug conjugates (ADCs) are a class of targeted therapeutics used to selectively kill cancer cells. It is important that they remain intact in the bloodstream and release their payload in the target cancer cell for maximum efficacy and minimum toxicity. The development of e...

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Autores principales: Ferhati, Xhenti, Jiménez-Moreno, Ester, Hoyt, Emily A., Salluce, Giulia, Cabeza-Cabrerizo, Mar, Navo, Claudio D., Compañón, Ismael, Akkapeddi, Padma, Matos, Maria J., Salaverri, Noelia, Garrido, Pablo, Martínez, Alfredo, Laserna, Víctor, Murray, Thomas V., Jiménez-Osés, Gonzalo, Ravn, Peter, Bernardes, Gonçalo J. L., Corzana, Francisco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8972253/
https://www.ncbi.nlm.nih.gov/pubmed/35293206
http://dx.doi.org/10.1021/jacs.1c07675
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author Ferhati, Xhenti
Jiménez-Moreno, Ester
Hoyt, Emily A.
Salluce, Giulia
Cabeza-Cabrerizo, Mar
Navo, Claudio D.
Compañón, Ismael
Akkapeddi, Padma
Matos, Maria J.
Salaverri, Noelia
Garrido, Pablo
Martínez, Alfredo
Laserna, Víctor
Murray, Thomas V.
Jiménez-Osés, Gonzalo
Ravn, Peter
Bernardes, Gonçalo J. L.
Corzana, Francisco
author_facet Ferhati, Xhenti
Jiménez-Moreno, Ester
Hoyt, Emily A.
Salluce, Giulia
Cabeza-Cabrerizo, Mar
Navo, Claudio D.
Compañón, Ismael
Akkapeddi, Padma
Matos, Maria J.
Salaverri, Noelia
Garrido, Pablo
Martínez, Alfredo
Laserna, Víctor
Murray, Thomas V.
Jiménez-Osés, Gonzalo
Ravn, Peter
Bernardes, Gonçalo J. L.
Corzana, Francisco
author_sort Ferhati, Xhenti
collection PubMed
description [Image: see text] Antibody-drug conjugates (ADCs) are a class of targeted therapeutics used to selectively kill cancer cells. It is important that they remain intact in the bloodstream and release their payload in the target cancer cell for maximum efficacy and minimum toxicity. The development of effective ADCs requires the study of factors that can alter the stability of these therapeutics at the atomic level. Here, we present a general strategy that combines synthesis, bioconjugation, linker technology, site-directed mutagenesis, and modeling to investigate the influence of the site and microenvironment of the trastuzumab antibody on the stability of the conjugation and linkers. Trastuzumab is widely used to produce targeted ADCs because it can target with high specificity a receptor that is overexpressed in certain breast cancer cells (HER2). We show that the chemical environment of the conjugation site of trastuzumab plays a key role in the stability of linkers featuring acid-sensitive groups such as acetals. More specifically, Lys-207, located near the reactive Cys-205 of a thiomab variant of the antibody, may act as an acid catalyst and promote the hydrolysis of acetals. Mutation of Lys-207 into an alanine or using a longer linker that separates this residue from the acetal group stabilizes the conjugates. Analogously, Lys-207 promotes the beneficial hydrolysis of the succinimide ring when maleimide reagents are used for conjugation, thus stabilizing the subsequent ADCs by impairing the undesired retro-Michael reactions. This work provides new insights for the design of novel ADCs with improved stability properties.
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spelling pubmed-89722532022-04-01 Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry Ferhati, Xhenti Jiménez-Moreno, Ester Hoyt, Emily A. Salluce, Giulia Cabeza-Cabrerizo, Mar Navo, Claudio D. Compañón, Ismael Akkapeddi, Padma Matos, Maria J. Salaverri, Noelia Garrido, Pablo Martínez, Alfredo Laserna, Víctor Murray, Thomas V. Jiménez-Osés, Gonzalo Ravn, Peter Bernardes, Gonçalo J. L. Corzana, Francisco J Am Chem Soc [Image: see text] Antibody-drug conjugates (ADCs) are a class of targeted therapeutics used to selectively kill cancer cells. It is important that they remain intact in the bloodstream and release their payload in the target cancer cell for maximum efficacy and minimum toxicity. The development of effective ADCs requires the study of factors that can alter the stability of these therapeutics at the atomic level. Here, we present a general strategy that combines synthesis, bioconjugation, linker technology, site-directed mutagenesis, and modeling to investigate the influence of the site and microenvironment of the trastuzumab antibody on the stability of the conjugation and linkers. Trastuzumab is widely used to produce targeted ADCs because it can target with high specificity a receptor that is overexpressed in certain breast cancer cells (HER2). We show that the chemical environment of the conjugation site of trastuzumab plays a key role in the stability of linkers featuring acid-sensitive groups such as acetals. More specifically, Lys-207, located near the reactive Cys-205 of a thiomab variant of the antibody, may act as an acid catalyst and promote the hydrolysis of acetals. Mutation of Lys-207 into an alanine or using a longer linker that separates this residue from the acetal group stabilizes the conjugates. Analogously, Lys-207 promotes the beneficial hydrolysis of the succinimide ring when maleimide reagents are used for conjugation, thus stabilizing the subsequent ADCs by impairing the undesired retro-Michael reactions. This work provides new insights for the design of novel ADCs with improved stability properties. American Chemical Society 2022-03-16 2022-03-30 /pmc/articles/PMC8972253/ /pubmed/35293206 http://dx.doi.org/10.1021/jacs.1c07675 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Ferhati, Xhenti
Jiménez-Moreno, Ester
Hoyt, Emily A.
Salluce, Giulia
Cabeza-Cabrerizo, Mar
Navo, Claudio D.
Compañón, Ismael
Akkapeddi, Padma
Matos, Maria J.
Salaverri, Noelia
Garrido, Pablo
Martínez, Alfredo
Laserna, Víctor
Murray, Thomas V.
Jiménez-Osés, Gonzalo
Ravn, Peter
Bernardes, Gonçalo J. L.
Corzana, Francisco
Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry
title Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry
title_full Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry
title_fullStr Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry
title_full_unstemmed Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry
title_short Single Mutation on Trastuzumab Modulates the Stability of Antibody–Drug Conjugates Built Using Acetal-Based Linkers and Thiol-Maleimide Chemistry
title_sort single mutation on trastuzumab modulates the stability of antibody–drug conjugates built using acetal-based linkers and thiol-maleimide chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8972253/
https://www.ncbi.nlm.nih.gov/pubmed/35293206
http://dx.doi.org/10.1021/jacs.1c07675
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