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Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples

Human cysteine cathepsins constitute an 11-membered family of proteases responsible for degradation of proteins in cellular endosomal–lysosomal compartments as such, they play important roles in antigen processing, cellular stress signaling, autophagy, and senescence. Moreover, for many years these...

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Autores principales: Poreba, Marcin, Groborz, Katarzyna, Vizovisek, Matej, Maruggi, Marco, Turk, Dusan, Turk, Boris, Powis, Garth, Drag, Marcin, Salvesen, Guy S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6839509/
https://www.ncbi.nlm.nih.gov/pubmed/31803426
http://dx.doi.org/10.1039/c9sc00997c
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author Poreba, Marcin
Groborz, Katarzyna
Vizovisek, Matej
Maruggi, Marco
Turk, Dusan
Turk, Boris
Powis, Garth
Drag, Marcin
Salvesen, Guy S.
author_facet Poreba, Marcin
Groborz, Katarzyna
Vizovisek, Matej
Maruggi, Marco
Turk, Dusan
Turk, Boris
Powis, Garth
Drag, Marcin
Salvesen, Guy S.
author_sort Poreba, Marcin
collection PubMed
description Human cysteine cathepsins constitute an 11-membered family of proteases responsible for degradation of proteins in cellular endosomal–lysosomal compartments as such, they play important roles in antigen processing, cellular stress signaling, autophagy, and senescence. Moreover, for many years these enzymes were also linked to tumor growth, invasion, angiogenesis and metastasis when upregulated. Individual biological roles of each cathepsin are difficult to establish, because of their redundancy and similar substrate specificities. Selective chemical tools that enable imaging of individual cathepsin activities in living cells, tumors, and the tumor microenvironment may provide a better insight into their functions. In this work, we used HyCoSuL technology to profile the substrate specificity of human cathepsin B. The use of unnatural amino acids in the substrate library enabled us to uncover the broad cathepsin B preferences that we utilized to design highly-selective substrates and fluorescent activity-based probes (ABPs). We further demonstrated that Cy5-labeled MP-CB-2 probe can selectively label cathepsin B in eighteen cancer cell lines tested, making this ABP highly suitable for other biological setups. Moreover, using Cy5-labelled MP-CB-2 we were able to demonstrate by fluorescence microscopy that in cancer cells cathepsins B and L share overlapping, but not identical subcellular localization.
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spelling pubmed-68395092019-12-04 Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples Poreba, Marcin Groborz, Katarzyna Vizovisek, Matej Maruggi, Marco Turk, Dusan Turk, Boris Powis, Garth Drag, Marcin Salvesen, Guy S. Chem Sci Chemistry Human cysteine cathepsins constitute an 11-membered family of proteases responsible for degradation of proteins in cellular endosomal–lysosomal compartments as such, they play important roles in antigen processing, cellular stress signaling, autophagy, and senescence. Moreover, for many years these enzymes were also linked to tumor growth, invasion, angiogenesis and metastasis when upregulated. Individual biological roles of each cathepsin are difficult to establish, because of their redundancy and similar substrate specificities. Selective chemical tools that enable imaging of individual cathepsin activities in living cells, tumors, and the tumor microenvironment may provide a better insight into their functions. In this work, we used HyCoSuL technology to profile the substrate specificity of human cathepsin B. The use of unnatural amino acids in the substrate library enabled us to uncover the broad cathepsin B preferences that we utilized to design highly-selective substrates and fluorescent activity-based probes (ABPs). We further demonstrated that Cy5-labeled MP-CB-2 probe can selectively label cathepsin B in eighteen cancer cell lines tested, making this ABP highly suitable for other biological setups. Moreover, using Cy5-labelled MP-CB-2 we were able to demonstrate by fluorescence microscopy that in cancer cells cathepsins B and L share overlapping, but not identical subcellular localization. Royal Society of Chemistry 2019-07-31 /pmc/articles/PMC6839509/ /pubmed/31803426 http://dx.doi.org/10.1039/c9sc00997c Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Poreba, Marcin
Groborz, Katarzyna
Vizovisek, Matej
Maruggi, Marco
Turk, Dusan
Turk, Boris
Powis, Garth
Drag, Marcin
Salvesen, Guy S.
Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples
title Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples
title_full Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples
title_fullStr Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples
title_full_unstemmed Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples
title_short Fluorescent probes towards selective cathepsin B detection and visualization in cancer cells and patient samples
title_sort fluorescent probes towards selective cathepsin b detection and visualization in cancer cells and patient samples
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6839509/
https://www.ncbi.nlm.nih.gov/pubmed/31803426
http://dx.doi.org/10.1039/c9sc00997c
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