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PNT1 Is a C11 Cysteine Peptidase Essential for Replication of the Trypanosome Kinetoplast
Jaspreet S Grewal1, Karen McLuskey2, Debanu Das3
1From the Wellcome Trust Centre for Molecular Parasitology, Institute of Infection, Immunity and Inflammation, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow G12 8TA, United Kingdom, the Department of Biology, Centre for Immunology and Infection, University of York, Wentworth Way, Heslington, York YO10 5DD, United Kingdom.
Abstract:
The structure of a C11 peptidase PmC11 from the gut bacterium, Parabacteroides merdae, has recently been determined, enabling the identification and characterization of a C11 orthologue, PNT1, in the parasitic protozoon Trypanosoma brucei. A phylogenetic analysis identified PmC11 orthologues in bacteria, archaea, Chromerids, Coccidia, and Kinetoplastida, the latter being the most divergent. A primary sequence alignment of PNT1 with clostripain and PmC11 revealed the position of the characteristic His-Cys catalytic dyad (His(99) and Cys(136)), and an Asp (Asp(134)) in the potential S1 binding site. Immunofluorescence and cryoelectron microscopy revealed that PNT1 localizes to the kinetoplast, an organelle containing the mitochondrial genome of the parasite (kDNA), with an accumulation of the protein at or near the antipodal sites. Depletion of PNT1 by RNAi in the T. brucei bloodstream form was lethal both in in vitro culture and in vivo in mice and the induced population accumulated cells lacking a kinetoplast. In contrast, overexpression of PNT1 led to cells having mislocated kinetoplasts. RNAi depletion of PNT1 in a kDNA independent cell line resulted in kinetoplast loss but was viable, indicating that PNT1 is required exclusively for kinetoplast maintenance. Expression of a recoded wild-type PNT1 allele, but not of an active site mutant restored parasite viability after induction in vitro and in vivo confirming that the peptidase activity of PNT1 is essential for parasite survival. These data provide evidence that PNT1 is a cysteine peptidase that is required exclusively for maintenance of the trypanosome kinetoplast.
Insights
A newly identified enzyme, PNT1, is crucial for maintaining the kinetoplast (kDNA) in Trypanosoma brucei. Its absence is lethal, highlighting its essential role in parasite survival.
Area of Science:
- Parasitology
- Molecular Biology
- Biochemistry
Background:
- The C11 peptidase PmC11 from Parabacteroides merdae provides a structural basis for identifying orthologues.
- Trypanosoma brucei harbors a C11 orthologue, PNT1, with potential roles in parasite biology.
Purpose of the Study:
- To characterize the function and localization of PNT1 in Trypanosoma brucei.
- To determine the essentiality of PNT1's peptidase activity for parasite survival and kinetoplast maintenance.
Main Methods:
- Phylogenetic analysis to identify PNT1 orthologues.
- Sequence alignment to identify catalytic residues.
- Immunofluorescence and cryoelectron microscopy for protein localization.
- RNA interference (RNAi) for gene depletion.
- In vitro and in vivo parasite viability assays.
- Expression of wild-type and mutant PNT1 alleles.
Main Results:
- PNT1 localizes to the kinetoplast (kDNA) in T. brucei.
- PNT1 depletion via RNAi is lethal and causes kinetoplast loss.
- Overexpression of PNT1 leads to kinetoplast mislocalization.
- PNT1's peptidase activity is essential for parasite survival and kinetoplast maintenance.
Conclusions:
- PNT1 is a cysteine peptidase essential for the maintenance of the trypanosome kinetoplast.
- PNT1 plays a critical, non-redundant role in T. brucei kDNA integrity and parasite viability.
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