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Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease

Reduced sensitivity of the human malaria parasite, Plasmodium falciparum, to Artemisinin and its derivatives (ARTs) threatens the global efforts towards eliminating malaria. ARTs have been shown to cause ubiquitous cellular and genetic insults, which results in the activation of the unfolded protein...

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Autores principales: Onchieku, Noah Machuki, Kumari, Sonam, Pandey, Rajan, Sharma, Vaibhav, Kumar, Mohit, Deshmukh, Arunaditya, Kaur, Inderjeet, Mohmmed, Asif, Gupta, Dinesh, Kiboi, Daniel, Gaur, Naseem, Malhotra, Pawan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621276/
https://www.ncbi.nlm.nih.gov/pubmed/34832620
http://dx.doi.org/10.3390/pathogens10111465
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author Onchieku, Noah Machuki
Kumari, Sonam
Pandey, Rajan
Sharma, Vaibhav
Kumar, Mohit
Deshmukh, Arunaditya
Kaur, Inderjeet
Mohmmed, Asif
Gupta, Dinesh
Kiboi, Daniel
Gaur, Naseem
Malhotra, Pawan
author_facet Onchieku, Noah Machuki
Kumari, Sonam
Pandey, Rajan
Sharma, Vaibhav
Kumar, Mohit
Deshmukh, Arunaditya
Kaur, Inderjeet
Mohmmed, Asif
Gupta, Dinesh
Kiboi, Daniel
Gaur, Naseem
Malhotra, Pawan
author_sort Onchieku, Noah Machuki
collection PubMed
description Reduced sensitivity of the human malaria parasite, Plasmodium falciparum, to Artemisinin and its derivatives (ARTs) threatens the global efforts towards eliminating malaria. ARTs have been shown to cause ubiquitous cellular and genetic insults, which results in the activation of the unfolded protein response (UPR) pathways. The UPR restores protein homeostasis, which otherwise would be toxic to cellular survival. Here, we interrogated the role of DNA-damage inducible protein 1 (PfDdi1), a unique proteasome-interacting retropepsin in mediating the actions of the ARTs. We demonstrate that PfDdi1 is an active A(2) family protease that hydrolyzes ubiquitinated proteasome substrates. Treatment of P. falciparum parasites with ARTs leads to the accumulation of ubiquitinated proteins in the parasites and blocks the destruction of ubiquitinated proteins by inhibiting the PfDdi1 protease activity. Besides, whereas the PfDdi1 is predominantly localized in the cytoplasm, exposure of the parasites to ARTs leads to DNA fragmentation and increased recruitment of the PfDdi1 into the nucleus. Furthermore, we show that Ddi1 knock-out Saccharomyces cerevisiae cells are more susceptible to ARTs and the PfDdI1 protein robustly restores the corresponding functions in the knock-out cells. Together, these results show that ARTs act in multiple ways; by inducing DNA and protein damage and might be impairing the damage recovery by inhibiting the activity of PfDdi1, an essential ubiquitin-proteasome retropepsin.
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spelling pubmed-86212762021-11-27 Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease Onchieku, Noah Machuki Kumari, Sonam Pandey, Rajan Sharma, Vaibhav Kumar, Mohit Deshmukh, Arunaditya Kaur, Inderjeet Mohmmed, Asif Gupta, Dinesh Kiboi, Daniel Gaur, Naseem Malhotra, Pawan Pathogens Article Reduced sensitivity of the human malaria parasite, Plasmodium falciparum, to Artemisinin and its derivatives (ARTs) threatens the global efforts towards eliminating malaria. ARTs have been shown to cause ubiquitous cellular and genetic insults, which results in the activation of the unfolded protein response (UPR) pathways. The UPR restores protein homeostasis, which otherwise would be toxic to cellular survival. Here, we interrogated the role of DNA-damage inducible protein 1 (PfDdi1), a unique proteasome-interacting retropepsin in mediating the actions of the ARTs. We demonstrate that PfDdi1 is an active A(2) family protease that hydrolyzes ubiquitinated proteasome substrates. Treatment of P. falciparum parasites with ARTs leads to the accumulation of ubiquitinated proteins in the parasites and blocks the destruction of ubiquitinated proteins by inhibiting the PfDdi1 protease activity. Besides, whereas the PfDdi1 is predominantly localized in the cytoplasm, exposure of the parasites to ARTs leads to DNA fragmentation and increased recruitment of the PfDdi1 into the nucleus. Furthermore, we show that Ddi1 knock-out Saccharomyces cerevisiae cells are more susceptible to ARTs and the PfDdI1 protein robustly restores the corresponding functions in the knock-out cells. Together, these results show that ARTs act in multiple ways; by inducing DNA and protein damage and might be impairing the damage recovery by inhibiting the activity of PfDdi1, an essential ubiquitin-proteasome retropepsin. MDPI 2021-11-11 /pmc/articles/PMC8621276/ /pubmed/34832620 http://dx.doi.org/10.3390/pathogens10111465 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Onchieku, Noah Machuki
Kumari, Sonam
Pandey, Rajan
Sharma, Vaibhav
Kumar, Mohit
Deshmukh, Arunaditya
Kaur, Inderjeet
Mohmmed, Asif
Gupta, Dinesh
Kiboi, Daniel
Gaur, Naseem
Malhotra, Pawan
Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease
title Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease
title_full Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease
title_fullStr Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease
title_full_unstemmed Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease
title_short Artemisinin Binds and Inhibits the Activity of Plasmodium falciparum Ddi1, a Retroviral Aspartyl Protease
title_sort artemisinin binds and inhibits the activity of plasmodium falciparum ddi1, a retroviral aspartyl protease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621276/
https://www.ncbi.nlm.nih.gov/pubmed/34832620
http://dx.doi.org/10.3390/pathogens10111465
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