Sep 2026· International Journal of Molecular Sciences· Vol 27, pp. 8205· 0 citations· 48 references
Medicine
TL;DR
This work underscores that understanding the diversity of mitochondrial protein import pathways not only provides insights into eukaryotic evolution but may also open new avenues for the development of antiparasitic drugs.
Abstract
The translocase of the outer membrane (TOM) complex is the primary entry gate for nucleus-encoded mitochondrial proteins and is conserved across eukaryotes; however, parasitic protists exhibit remarkable adaptations. This review synthesizes current knowledge on the composition, structure, and function of TOM and related import systems in apicomplexans, kinetoplastids, and anaerobic protists with reduced mitochondrion-related organelles (MROs). We highlight major evolutionary innovations, including the bacterial-origin ATOM complex in trypanosomes—comprising core channel ATOM40, receptors ATOM46/69, structural subunit ATOM19, and multifunctional pATOM36 linking protein import to mitochondrial DNA inheritance—alongside lineage-specific receptors such as Tom60 in Entamoeba histolytica and extreme reductive streamlining in microsporidian mitosomes. Beyond its canonical role in biogenesis, we explore how parasites co-opt the host TOM complex for intracellular survival and how the import machinery integrates with broader cellular processes, including immune signaling, stress responses, and organelle dynamics. Notably, the essential nature of these adapted systems, coupled with their significant divergence from host machinery, highlights their potential as targets for developing novel therapeutic strategies against major parasitic diseases. This work underscores that understanding the diversity of mitochondrial protein import pathways not only provides insights into eukaryotic evolution but may also open new avenues for the development of antiparasitic drugs.
SUMMARY The mitochondrial proteomes of Leishmania tarentolae and Trypanosoma brucei contain ~1,700 proteins, most of which lack homologs in higher eukaryotes. Here, we integrate complexome profiling and cryo-electron microscopy to define conserved and lineage-specific macromolecular assemblies that support mitochondria...
Md Solayman, Yi-Ting Liao, Sarah E. Calvo et al.· Molecules and Cells· 2 citations
Mitochondrial complexes, such as the mitochondrial electron transport chain (mETC), the F1Fo-ATP synthase, the mitochondrial ribosome and the Translocase of the Outer Membrane (TOM) complex are centrally important for mitochondrial function and cell survival. Recently, an unexpected diversity in the composition of thes...
Andrew E. Maclean, Orsola Iorillo, Drahomíra Faktorová et al.· PLoS Pathogens· 0 citations
Trypanosoma brucei and Leishmania tarentolae are model kinetoplastids whose mitochondria contain a unique DNA network, kinetoplast DNA (kDNA), and exhibit specialized features, including developmental remodeling and RNA editing. By integrating mass spectrometry-based protein correlation profiling with published dataset...
Andres F. Vacas, Md Solayman, Sarah E. Calvo et al.· Molecules and Cells· 4 citations
This work highlights general principles, mechanisms, and consequences of host and viral protein localization to and from the mitochondria, and offers a framework for understanding mitochondria not as passive metabolic machinery but as actively contested cellular territory whose protein composition is continuously negot...
Dustin C. Hancks, Steven F. Baker· Journal of Virology· 0 citations
Regulated protein secretion is a fundamental process by which eukaryotic cells respond to and interact with their dynamic environments, yet its mechanism outside metazoans remains largely unknown. Here we uncover an atypical small GTPase complex (Nd-GTPase-Nd9-NdP1) conserved across the Alveolata-a major eukaryotic cla...
M. Cova, Lucas Morley, Marjorie Maynadier et al.· Nature Microbiology· 0 citations
Plastids retain the imprint of their cyanobacterial ancestry by dividing primarily through binary fission. This process is executed by elaborate division machinery that has continued to evolve since endosymbiosis. Early identification and characterization of the Arabidopsis accumulation and replication of chloroplasts...
Joanna Lee, Hiruni N. Weerasooriya, Cheng Chen et al.· Plant Physiology· 0 citations
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