Dr Kalesh Karunakaran Nair Anandamma kalesh.karunakaran@durham.ac.uk
Academic Visitor
Dr Kalesh Karunakaran Nair Anandamma kalesh.karunakaran@durham.ac.uk
Academic Visitor
Sandeep Sundriyal
Hirunika Perera
Professor Steven Cobb s.l.cobb@durham.ac.uk
Professor
Professor Paul Denny p.w.denny@durham.ac.uk
Professor
Heat shock protein 90 (Hsp90) is a conserved molecular chaperone responsible for the folding and maturation of nascent proteins. Hsp90 is regarded as a master regulator of protein homeostasis in the cell, and its inhibition affects the functions of a large array of client proteins. The classical Hsp90 inhibitor tanespimycin has shown potent antileishmanial activity. Despite the increasing importance of Hsp90 inhibition in the development of antileishmanial agents, the global effects of these inhibitors on the parasite proteome remain unknown. By combining tanespimycin treatment with bioorthogonal noncanonical amino acid tagging (BONCAT) metabolic labeling and isobaric tags for relative and absolute quantitation (iTRAQ)-based quantitative proteomic mass spectrometry, for the first time, we robustly profiled the relative changes in the synthesis of hundreds of parasite proteins as functions of dose and duration of the inhibitor treatment. We showed that Hsp90 inhibition dynamically regulates nascent protein synthesis in Leishmania mexicana, with many chaperones and virulence factors showing inhibitor concentration- and treatment duration-dependent changes in relative expression. Many ribosomal proteins showed a downregulation upon severe Hsp90 inhibition, providing the first protein-level evidence that Hsp90 inhibition affects the protein synthesis capacity of the ribosome in this organism. We also provide an unbiased target validation of tanespimycin in L. mexicana using live parasite photoaffinity labeling with a novel chemical probe and quantitative proteomic mass spectrometry. We showed that the classical Hsp90 inhibitor not only engages with its presumed target, Hsp83-1, in L. mexicana promastigotes but also affects multiple proteins involved in protein synthesis and quality control in the parasite. This study defines the Leishmania parasites’ response to Hsp90 inhibition at the level of nascent global protein synthesis and provides a rich resource for future studies on Leishmania spp. biology and antileishmanial drug development.
Karunakaran, K., Sundriyal, S., Perera, H., Cobb, S. L., & Denny, P. W. (2021). Quantitative Proteomics Reveals that Hsp90 Inhibition Dynamically Regulates Global Protein Synthesis in Leishmania mexicana. mSystems, 6(3), Article e00089-21. https://doi.org/10.1128/msystems.00089-21
Journal Article Type | Article |
---|---|
Acceptance Date | Apr 23, 2021 |
Online Publication Date | May 11, 2021 |
Publication Date | 2021-05 |
Deposit Date | May 11, 2021 |
Publicly Available Date | May 12, 2021 |
Journal | mSystems |
Electronic ISSN | 2379-5077 |
Publisher | American Society for Microbiology |
Peer Reviewed | Peer Reviewed |
Volume | 6 |
Issue | 3 |
Article Number | e00089-21 |
DOI | https://doi.org/10.1128/msystems.00089-21 |
Public URL | https://durham-repository.worktribe.com/output/1242750 |
Publisher URL | https://msystems.asm.org/content/6/3/e00089-21/article-info |
Published Journal Article
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Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/
Copyright Statement
Copyright © 2021 Kalesh et al.
This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license.
Published Journal Article
(2.3 Mb)
PDF
Licence
http://creativecommons.org/licenses/by/4.0/
Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/
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