Metadata
Title
Enlighten Theses
Category
general
UUID
8a0b0d98db14475c905ab940d9b85525
Source URL
https://theses.gla.ac.uk/38972/
Parent URL
https://theses.gla.ac.uk/view/subjects/QH.html
Crawl Time
2026-03-11T07:25:48+00:00
Rendered Raw Markdown

Enlighten Theses

Source: https://theses.gla.ac.uk/38972/ Parent: https://theses.gla.ac.uk/view/subjects/QH.html

Site navigation

Site tools

A-Z Lists

Enlighten Theses

In this section

Mitochondrial division in T. gondii: analysis of the Dynamin-related protein C and of its putative interactors

Melatti, Carmen (2018) Mitochondrial division in T. gondii: analysis of the Dynamin-related protein C and of its putative interactors. PhD thesis, University of Glasgow.

Full text available as:

PDF Download (7MB)

Printed Thesis Information: https://eleanor.lib.gla.ac.uk/record=b3331598

Abstract

Apicomplexa parasites such as Plasmodium spp. and Toxoplasma gondii are characterised by a single, lasso-shaped mitochondrion. This organelle is critical during all phases of the parasite life cycle, and is a validated drug target against parasites of the Apicomplexa phylum. In contrast to other eukaryotes, replication of the mitochondrion in these parasites is tightly linked to the cell cycle. A key step in mitochondrial segregation is the fission event, which in many eukaryotes requires the action of Dynamin-related proteins: these mechanochemical enzymes are recruited at the outer membrane of the mitochondria and mediate membrane constriction. To date, none of the components of the apicomplexan fission machinery have been identified and validated. In this work, I investigated the role of DrpC, a highly divergent, Apicomplexa-specific putative Dynamin-related protein, in T. gondii. Endogenous tagging showed that DrpC is adjacent to the mitochondrion, and is localised both at its periphery and at its basal part, where fission is expected to occur. Depletion and dominant negative expression of DrpC results in interconnected mitochondria and ultimately in drastic changes in mitochondrial morphology, leading to parasite death. These data indicate that DrpC is essential for mitochondrial biogenesis in T. gondii. To better understand the fission mechanism, DrpC potential interactors were investigated in this study; intriguingly, it is here shown that the conserved mitochondrial protein Fis1, which in other eukaryotes recruits the Dynamin-related protein during fission, is not required for mitochondrial fission in T. gondii. Conversely, immunoprecipitation data suggest an interaction between DrpC and the microtubule scaffold; as DrpC is also seen at the periphery of the parasite, these data could suggest a second role for this atypical Dynamin-related protein.

Item Type: Thesis (PhD)
Qualification Level: Doctoral
Keywords: Toxoplasma gondii, mitochoondria, division, cytoskeleton, cell cycle, parasite.
Subjects: Q Science > QH Natural history
Colleges/Schools: College of Medical Veterinary and Life Sciences > School of Infection & Immunity > Parasitology
Supervisor's Name: Meissner, Professor Markus and Sheiner, Dr. Lilach
Date of Award: 2018
Depositing User: Miss Carmen Melatti
Unique ID: glathesis:2018-38972
Copyright: Copyright of this thesis is held by the author.
Date Deposited: 03 Dec 2018 14:24
Last Modified: 30 Jan 2019 09:32
URI: https://theses.gla.ac.uk/id/eprint/38972
Related URLs: - Article DOI

Actions (login required)

View Item

Downloads

Downloads per month over past year

Tools

Tools

Tools

RDF+XML RDF+N-Triples JSON RefWorks Dublin Core Atom Simple Metadata Refer METS HTML Citation ASCII Citation OpenURL ContextObject EndNote OpenURL ContextObject in Span MODS MPEG-21 DIDL EP3 XML Data Cite XML Reference Manager RDF+N3 Multiline CSV

\

Back to top

Library

The University of Glasgow is a registered Scottish charity: Registration Number SC004401