A Plasmodium falciparum ubiquitin-specific protease (PfUSP) is essential for parasite survival and its disruption enhances artemisinin efficacy.


Journal

The Biochemical journal
ISSN: 1470-8728
Titre abrégé: Biochem J
Pays: England
ID NLM: 2984726R

Informations de publication

Date de publication:
13 01 2023
Historique:
received: 15 08 2022
revised: 09 12 2022
accepted: 13 12 2022
pubmed: 14 12 2022
medline: 11 1 2023
entrez: 13 12 2022
Statut: ppublish

Résumé

Proteins associated with ubiquitin-proteasome system (UPS) are potential drug targets in the malaria parasite. The ubiquitination and deubiquitination are key regulatory processes for the functioning of UPS. In this study, we have characterized the biochemical and functional role of a novel ubiquitin-specific protease (USP) domain-containing protein of the human malaria parasite Plasmodium falciparum (PfUSP). We have shown that the PfUSP is an active deubiquitinase associated with parasite endoplasmic reticulum (ER). Selection linked integration (SLI) method for C-terminal tagging and GlmS-ribozyme mediated inducible knock-down (iKD) of PfUSP was utilized to assess its functional role. Inducible knockdown of PfUSP resulted in a remarkable reduction in parasite growth and multiplication; specifically, PfUSP-iKD disrupted ER morphology and development, blocked the development of healthy schizonts, and hindered proper merozoite development. PfUSP-iKD caused increased ubiquitylation of specific proteins, disrupted organelle homeostasis and reduced parasite survival. Since the mode of action of artemisinin and the artemisinin-resistance are shown to be associated with the proteasome machinery, we analyzed the effect of dihydroartemisinin (DHA) on PfUSP-iKD parasites. Importantly, the PfUSP-knocked-down parasite showed increased sensitivity to dihydroartemisinin (DHA), whereas no change in chloroquine sensitivity was observed, suggesting a role of PfUSP in combating artemisinin-induced cellular stress. Together, the results show that Plasmodium PfUSP is an essential protease for parasite survival, and its inhibition increases the efficacy of artemisinin-based drugs. Therefore, PfUSP can be targeted to develop novel scaffolds for developing new antimalarials to combat artemisinin resistance.

Identifiants

pubmed: 36511651
pii: 232270
doi: 10.1042/BCJ20220429
doi:

Substances chimiques

artenimol 6A9O50735X
Proteasome Endopeptidase Complex EC 3.4.25.1
Ubiquitin-Specific Proteases EC 3.4.19.12
Artemisinins 0
artemisinin 9RMU91N5K2
Antimalarials 0
Ubiquitin 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

25-39

Informations de copyright

© 2023 The Author(s). Published by Portland Press Limited on behalf of the Biochemical Society.

Auteurs

Priya Arora (P)

International Centre for Genetic Engineering and Biotechnology, New Delhi 110 067, India.

Monika Narwal (M)

International Centre for Genetic Engineering and Biotechnology, New Delhi 110 067, India.

Vandana Thakur (V)

International Centre for Genetic Engineering and Biotechnology, New Delhi 110 067, India.

Osama Mukhtar (O)

International Centre for Genetic Engineering and Biotechnology, New Delhi 110 067, India.

Pawan Malhotra (P)

International Centre for Genetic Engineering and Biotechnology, New Delhi 110 067, India.

Asif Mohmmed (A)

International Centre for Genetic Engineering and Biotechnology, New Delhi 110 067, India.

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Classifications MeSH