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Updated: Jul 19, 2026

An Improved Method to Isolate Mitochondrial Contact Sites
Published on: June 16, 2023
Microsporidian mitosomes retain elements of the general mitochondrial targeting system
Lena Burri1, Bryony A P Williams, Dejan Bursac
1Canadian Institute for Advanced Research, Department of Botany, University of British Columbia, 3529-6270 University Boulevard, Vancouver, BC, Canada V6T 1Z4.
Abstract:
Microsporidia are intracellular parasites that infect a variety of animals, including humans. As highly specialized parasites, they are characterized by a number of unusual adaptations, many of which are manifested as extreme reduction at the molecular, biochemical, and cellular levels. One interesting aspect of reduction is the mitochondrion. Microsporidia were long considered to be amitochondriate, but recently a tiny mitochondrion-derived organelle called the mitosome was detected. The molecular function of this organelle remains poorly understood. The mitosome has no genome, so it must import all its proteins from the cytosol. In other fungi, the mitochondrial protein import machinery consists of a network series of heterooligomeric translocases and peptidases, but in microsporidia, only a few subunits of some of these complexes have been identified to date. Here, we look at targeting sequences of the microsporidian mitosomal import system and show that mitosomes do in some cases still use N-terminal and internal targeting sequences that are recognizable by import systems of mitochondria in yeast. Furthermore, we have examined the function of the inner membrane peptidase processing enzyme and demonstrate that mitosomal substrates of this enzyme are processed to mature proteins in one species with a simplified processing complex, Antonospora locustae. However, in Encephalitozoon cuniculi, the processing complex is lost altogether, and the preprotein substrate functions with the targeting leader still attached. This report provides direct evidence for presequencing processing in mitosomes and also shows how a complex molecular system has continued to degenerate throughout the evolution of microsporidia.
Insights
Microsporidia parasites have reduced molecular systems. Their mitosome organelle shows degeneration, with some species losing protein processing enzymes, indicating ongoing evolutionary simplification.
Area of Science:
- Parasitology
- Cell Biology
- Evolutionary Biology
Background:
- Microsporidia are intracellular parasites known for extreme molecular reduction.
- They possess a mitochondrion-derived organelle called the mitosome, whose function is poorly understood.
- Mitosomes lack a genome and rely on cytosolic protein import.
Purpose of the Study:
- To investigate the targeting sequences and protein processing mechanisms in microsporidian mitosomes.
- To understand the evolutionary degeneration of molecular systems in microsporidia.
Main Methods:
- Analysis of targeting sequences for the microsporidian mitosomal import system.
- Examination of the inner membrane peptidase processing enzyme function in different microsporidian species.
Main Results:
- Microsporidian mitosomes utilize N-terminal and internal targeting sequences recognized by yeast mitochondrial import systems.
- The inner membrane peptidase processing enzyme functions in Antonospora locustae with a simplified complex.
- Encephalitozoon cuniculi has lost the processing complex, with substrates functioning with attached targeting leaders.
Conclusions:
- Mitosomes exhibit preprotein processing, demonstrating direct evidence of this mechanism.
- The study provides insights into the progressive degeneration of complex molecular systems during microsporidian evolution.
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