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BacPROTACs mediate targeted protein degradation in bacteria

Hijacking the cellular protein degradation system offers unique opportunities for drug discovery, as exemplified by proteolysis-targeting chimeras. Despite their great promise for medical chemistry, so far, it has not been possible to reprogram the bacterial degradation machinery to interfere with m...

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Autores principales: Morreale, Francesca E., Kleine, Stefan, Leodolter, Julia, Junker, Sabryna, Hoi, David M., Ovchinnikov, Stepan, Okun, Anastasia, Kley, Juliane, Kurzbauer, Robert, Junk, Lukas, Guha, Somraj, Podlesainski, David, Kazmaier, Uli, Boehmelt, Guido, Weinstabl, Harald, Rumpel, Klaus, Schmiedel, Volker M., Hartl, Markus, Haselbach, David, Meinhart, Anton, Kaiser, Markus, Clausen, Tim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9240326/
https://www.ncbi.nlm.nih.gov/pubmed/35662409
http://dx.doi.org/10.1016/j.cell.2022.05.009
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author Morreale, Francesca E.
Kleine, Stefan
Leodolter, Julia
Junker, Sabryna
Hoi, David M.
Ovchinnikov, Stepan
Okun, Anastasia
Kley, Juliane
Kurzbauer, Robert
Junk, Lukas
Guha, Somraj
Podlesainski, David
Kazmaier, Uli
Boehmelt, Guido
Weinstabl, Harald
Rumpel, Klaus
Schmiedel, Volker M.
Hartl, Markus
Haselbach, David
Meinhart, Anton
Kaiser, Markus
Clausen, Tim
author_facet Morreale, Francesca E.
Kleine, Stefan
Leodolter, Julia
Junker, Sabryna
Hoi, David M.
Ovchinnikov, Stepan
Okun, Anastasia
Kley, Juliane
Kurzbauer, Robert
Junk, Lukas
Guha, Somraj
Podlesainski, David
Kazmaier, Uli
Boehmelt, Guido
Weinstabl, Harald
Rumpel, Klaus
Schmiedel, Volker M.
Hartl, Markus
Haselbach, David
Meinhart, Anton
Kaiser, Markus
Clausen, Tim
author_sort Morreale, Francesca E.
collection PubMed
description Hijacking the cellular protein degradation system offers unique opportunities for drug discovery, as exemplified by proteolysis-targeting chimeras. Despite their great promise for medical chemistry, so far, it has not been possible to reprogram the bacterial degradation machinery to interfere with microbial infections. Here, we develop small-molecule degraders, so-called BacPROTACs, that bind to the substrate receptor of the ClpC:ClpP protease, priming neo-substrates for degradation. In addition to their targeting function, BacPROTACs activate ClpC, transforming the resting unfoldase into its functional state. The induced higher-order oligomer was visualized by cryo-EM analysis, providing a structural snapshot of activated ClpC unfolding a protein substrate. Finally, drug susceptibility and degradation assays performed in mycobacteria demonstrate in vivo activity of BacPROTACs, allowing selective targeting of endogenous proteins via fusion to an established degron. In addition to guiding antibiotic discovery, the BacPROTAC technology presents a versatile research tool enabling the inducible degradation of bacterial proteins.
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spelling pubmed-92403262022-07-01 BacPROTACs mediate targeted protein degradation in bacteria Morreale, Francesca E. Kleine, Stefan Leodolter, Julia Junker, Sabryna Hoi, David M. Ovchinnikov, Stepan Okun, Anastasia Kley, Juliane Kurzbauer, Robert Junk, Lukas Guha, Somraj Podlesainski, David Kazmaier, Uli Boehmelt, Guido Weinstabl, Harald Rumpel, Klaus Schmiedel, Volker M. Hartl, Markus Haselbach, David Meinhart, Anton Kaiser, Markus Clausen, Tim Cell Article Hijacking the cellular protein degradation system offers unique opportunities for drug discovery, as exemplified by proteolysis-targeting chimeras. Despite their great promise for medical chemistry, so far, it has not been possible to reprogram the bacterial degradation machinery to interfere with microbial infections. Here, we develop small-molecule degraders, so-called BacPROTACs, that bind to the substrate receptor of the ClpC:ClpP protease, priming neo-substrates for degradation. In addition to their targeting function, BacPROTACs activate ClpC, transforming the resting unfoldase into its functional state. The induced higher-order oligomer was visualized by cryo-EM analysis, providing a structural snapshot of activated ClpC unfolding a protein substrate. Finally, drug susceptibility and degradation assays performed in mycobacteria demonstrate in vivo activity of BacPROTACs, allowing selective targeting of endogenous proteins via fusion to an established degron. In addition to guiding antibiotic discovery, the BacPROTAC technology presents a versatile research tool enabling the inducible degradation of bacterial proteins. Cell Press 2022-06-23 /pmc/articles/PMC9240326/ /pubmed/35662409 http://dx.doi.org/10.1016/j.cell.2022.05.009 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Morreale, Francesca E.
Kleine, Stefan
Leodolter, Julia
Junker, Sabryna
Hoi, David M.
Ovchinnikov, Stepan
Okun, Anastasia
Kley, Juliane
Kurzbauer, Robert
Junk, Lukas
Guha, Somraj
Podlesainski, David
Kazmaier, Uli
Boehmelt, Guido
Weinstabl, Harald
Rumpel, Klaus
Schmiedel, Volker M.
Hartl, Markus
Haselbach, David
Meinhart, Anton
Kaiser, Markus
Clausen, Tim
BacPROTACs mediate targeted protein degradation in bacteria
title BacPROTACs mediate targeted protein degradation in bacteria
title_full BacPROTACs mediate targeted protein degradation in bacteria
title_fullStr BacPROTACs mediate targeted protein degradation in bacteria
title_full_unstemmed BacPROTACs mediate targeted protein degradation in bacteria
title_short BacPROTACs mediate targeted protein degradation in bacteria
title_sort bacprotacs mediate targeted protein degradation in bacteria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9240326/
https://www.ncbi.nlm.nih.gov/pubmed/35662409
http://dx.doi.org/10.1016/j.cell.2022.05.009
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